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1886059

세계의 정밀농업용 이미징 기술 시장

Imaging Technology for Precision Agriculture

발행일: | 리서치사: Market Glass, Inc. (Formerly Global Industry Analysts, Inc.) | 페이지 정보: 영문 293 Pages | 배송안내 : 1-2일 (영업일 기준)

    
    
    



※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

세계의 정밀농업용 이미징 기술 시장은 2030년까지 17억 달러에 달할 전망

정밀농업용 이미징 기술 세계 시장은 2024년에 11억 달러로 추정되며, 2024년부터 2030년까지의 분석 기간 동안 CAGR 7.6%로 성장하여 2030년까지 17억 달러에 달할 것으로 예측됩니다. 이 보고서에서 분석 대상으로 한 부문 중 하나인 멀티스펙트럴 기술은 7.0%의 CAGR을 기록하며 분석 기간 종료까지 10억 달러에 달할 것으로 예측됩니다. 초분광 기술 부문의 성장률은 분석 기간 동안 8.4%의 CAGR로 추정됩니다.

미국 시장은 2억 8,330만 달러로 추정되는 한편 중국은 11.1%의 CAGR로 성장할 것으로 예측됩니다

미국의 정밀농업용 이미징 기술 시장은 2024년에 2억 8,330만 달러로 추정됩니다. 세계 2위 경제 대국인 중국은 2024년부터 2030년까지의 분석 기간 동안 CAGR 11.1%를 기록하며 2030년까지 4억 1,240만 달러의 시장 규모에 달할 것으로 예측됩니다. 기타 주목할 만한 지역 시장으로는 일본과 캐나다가 있으며, 각각 분석 기간 동안에 3.9%, 6.7%의 CAGR로 성장할 것으로 예측됩니다. 유럽에서는 독일이 약 4.6%의 CAGR로 성장할 것으로 예측됩니다.

정밀농업용 이미징 기술 세계 시장 - 주요 시장 동향과 촉진요인 요약

이미징 기술이 정밀농업의 핵심이 되어 농업에 혁명을 가져올 수 있을까?

이미징 기술이 농업을 변화시키고 있는데, 왜 정밀농업과 지속가능한 식량 생산에 있어 이미징 기술이 중요한 것일까? 정밀농업에서 이미징 기술은 위성 이미지, 멀티 스펙트럼 또는 하이퍼 스펙트럼 카메라가 장착된 드론, 머신비전 시스템 등의 첨단 도구를 사용하여 작물, 토양, 환경 조건에 대한 데이터를 수집하는 것을 말합니다. 이러한 이미지는 인공지능(AI)과 머신러닝(ML) 알고리즘을 통해 처리 및 분석되어 농부들에게 실용적인 인사이트를 제공합니다. 이 기술을 통해 농부들은 작물의 생육 상태를 모니터링하고, 관개를 최적화하며, 해충과 질병을 조기에 발견하고, 데이터에 기반한 의사결정을 통해 수확량을 극대화할 수 있습니다.

정밀농업에서 이미징 기술의 의의는 작물의 건강 상태와 밭의 상태에 대한 상세한 정보를 실시간으로 제공함으로써 자원 관리의 개선과 보다 효율적인 농업을 실현할 수 있다는 점에 있습니다. 기존 농법은 육안 검사나 과거 데이터에 의존하는 경우가 많아 시간이 오래 걸리고 정확도가 낮을 수 있습니다. 이에 반해 이미징 기술은 밭 전체에 대한 종합적인 데이터를 제공하여 보다 정밀한 개입을 가능하게 합니다. 영양 부족 파악, 관개 수요 모니터링, 수확량 예측 등 이미징 기술은 현대 농업에 필수적인 도구로 빠르게 자리 잡고 있으며, 지속가능성 증진, 효율성 향상, 작물 생산성 향상에 기여하고 있습니다.

정밀농업의 이미징 기술 발전은 어떻게 기술 혁신을 통해 향상되었을까?

이미징 시스템, AI, 데이터 분석의 기술 발전은 정밀농업에서 이미징 기술의 효율성을 크게 향상시키고 있습니다. 가장 영향력 있는 발전 중 하나는 다중 스펙트럼 및 하이퍼 스펙트럼 이미징의 통합입니다. 가시광선 스펙트럼으로 이미지를 캡처하는 기존 카메라와 달리, 멀티 스펙트럼 및 하이퍼 스펙트럼 센서는 적외선 및 자외선을 포함한 더 넓은 파장 범위의 데이터를 수집합니다. 이를 통해 물 스트레스, 영양 부족, 질병의 초기 징후 등 육안으로 확인할 수 없는 작물 건강 상태의 미묘한 변화를 감지할 수 있습니다. 예를 들어, 식물은 스트레스를 받으면 빛의 반사 특성이 변하는데, 다중 스펙트럼 이미징은 이러한 차이를 감지하여 조기 개입을 가능하게 합니다.

또한, 드론 기술의 발전은 정밀농업의 이미지 데이터 수집 방법에도 혁명을 가져왔습니다. 고해상도 카메라, 다중 스펙트럼 센서, 열화상 시스템을 탑재한 드론은 농지 전체의 상세한 항공 영상을 실시간으로 촬영할 수 있습니다. 이 드론은 농부들이 넓은 지역을 신속하게 조사하고 작물의 건강 상태, 토양 상태, 관개 수요를 평가할 수 있는 분석 데이터를 수집할 수 있는 비용 효율적인 수단을 제공합니다. 드론 자동화 기술의 발전으로 농부들은 정기적인 비행을 예약하고, 작물의 생육 상태를 모니터링하고, 문제 지점을 파악하여 그에 따라 농법을 조정할 수 있게 되었습니다. 이러한 실시간 데이터 수집을 통해 보다 역동적이고 반응성이 높은 농업이 가능해져 효율성이 향상되고 자원 낭비를 줄일 수 있습니다.

인공지능(AI)과 머신러닝(ML)은 정밀농업에서 영상기술의 역량을 더욱 강화하고 있습니다. AI 알고리즘은 영상 시스템이 수집한 방대한 데이터를 분석하여 작물의 건강 상태, 수확량 잠재력, 해충 및 질병 발생에 대한 패턴을 식별하고 예측합니다. 이러한 알고리즘은 복잡한 데이터세트를 사람보다 훨씬 빠르고 정확하게 처리할 수 있으며, 농부들에게 실용적인 인사이트를 제공합니다. 예를 들어, AI가 탑재된 이미지 인식 시스템은 시각적 데이터를 기반으로 특정 해충이나 질병을 식별할 수 있기 때문에 농가는 문제가 확대되기 전에 대처할 수 있습니다. 머신러닝 모델은 시간이 지남에 따라 정확도가 향상되어 이미지 시스템의 분석 정확도가 높아져 더 나은 의사결정과 높은 수확량으로 이어집니다.

영상 기술의 또 다른 중요한 발전은 위성 이미지의 활용입니다. 첨단 센서가 탑재된 고해상도 위성은 농부들에게 상세한 현장 이미지를 제공하고, 광범위한 작물 생육 상태와 토양 건강 상태를 모니터링할 수 있게 해줍니다. 위성영상은 수작업이나 드론을 통한 정기적인 조사가 어려운 대규모 농업경영에 특히 유용합니다. 위성 해상도의 향상과 이미지 획득 빈도의 증가로 농부들은 작물의 상태를 거의 실시간으로 파악할 수 있어 관개, 시비, 방제 시기를 적절히 판단할 수 있게 되었습니다. 위성 데이터는 AI 및 기계 학습 도구와 통합되어 작물 모니터링 및 예측 정확도를 더욱 높이고 있습니다.

또한 열화상 기술은 정밀농업에서 유용한 도구가 되어 농부들이 작물의 수분 스트레스를 모니터링하고 관개 방법을 최적화할 수 있도록 돕고 있습니다. 열화상 카메라는 식물 간의 온도 차이를 감지하여 충분한 수분을 얻지 못하는 밭의 영역을 식별할 수 있습니다. 이 데이터를 통해 농부들은 실시간으로 관개 시스템을 조정하여 작물이 필요한 수분을 얻을 수 있도록 하는 동시에 물 낭비를 최소화할 수 있습니다. 물이 귀중한 자원인 지역에서 열화상 기술은 관개 효율을 최적화하고 지속가능한 농업 관행을 촉진하고 농업의 환경 부하를 줄이는 데 기여하고 있습니다.

3D 이미징과 LiDAR(Light Detection and Ranging) 기술의 도입은 농부들이 지형을 매핑하고 식물의 성장을 보다 정밀하게 모니터링할 수 있게함으로써 정밀농업을 한 단계 더 발전시키고 있습니다. LiDAR는 레이저 펄스를 사용하여 센서와 지상의 물체와의 거리를 측정하고, 지형과 작물의 관상층에 대한 고정밀 3D 모델을 생성합니다. 이 데이터는 식물의 높이 평가, 작물의 발육 상태 모니터링, 밭 전체 식물의 건강 상태 차이를 감지하는 데 활용될 수 있습니다. 3D 이미징과 LiDAR는 상세한 공간 정보를 제공함으로써 농부들이 작물 밀도를 최적화하고, 추가 관리가 필요한 영역을 식별하고, 수확 계획을 보다 효과적으로 수립할 수 있도록 돕습니다.

엣지 컴퓨팅은 현대 농업에서 이미지 기술의 중요한 구성요소로 자리 잡고 있습니다. 드론이나 센서, 엣지 디바이스에서 직접 데이터를 처리함으로써 대규모 데이터세트를 중앙 서버로 전송할 필요 없이 농가는 즉각적인 피드백을 받을 수 있습니다. 이를 통해 지연을 줄이고 현장에서 신속한 의사결정을 내릴 수 있습니다. 예를 들어, 엣지 컴퓨팅 기능이 탑재된 드론은 실시간으로 이미지를 분석하여 해충 발생, 물 스트레스 등 주의가 필요한 밭 지역을 파악할 수 있습니다. 이를 통해 농가는 즉각적인 대응책을 마련할 수 있습니다. 이러한 실시간 처리는 변화하는 상황에 빠르게 대응할 수 있어 정밀농업의 효율성을 향상시킵니다.

클라우드 컴퓨팅 및 데이터 분석 플랫폼은 대규모 데이터세트의 저장, 처리 및 분석을 위한 확장 가능한 솔루션을 농가에 제공함으로써 농업에서 이미지 기술의 가치를 더욱 높이고 있습니다. 클라우드 기반 플랫폼을 통해 농부들은 어디서든 이미지 데이터에 접근하고 분석할 수 있어 원격지에서도 쉽게 밭을 모니터링할 수 있습니다. 이러한 플랫폼은 위성 영상, 드론 영상, 센서 데이터 등 다양한 데이터 소스를 하나의 대시보드에 통합하여 농가에 경영 상황에 대한 종합적인 관점을 제공하는 경우가 많습니다. 클라우드 기반 분석을 통해 농부들은 시간 경과에 따른 추세를 추적하고, 데이터에 기반한 의사결정을 내릴 수 있으며, 수확량 향상과 자원 관리 최적화를 위한 농법을 개선할 수 있습니다.

이미징 기술이 정밀농업과 지속가능한 농업에 중요한 이유는 무엇일까?

이미징 기술이 정밀농업과 지속가능한 농업에서 매우 중요한 이유는 농부들이 작물의 건강 상태, 토양 상태, 환경적 요인을 실시간으로 모니터링하여 보다 효율적이고 목표에 맞는 조치를 취할 수 있기 때문입니다. 이 기술이 필수적인 주요 이유 중 하나는 인간의 눈으로 포착할 수 없는 세부적인 정보를 제공할 수 있다는 점입니다. 예를 들어, 다중 스펙트럼 및 하이퍼 스펙트럼 이미징 시스템은 영양 부족, 질병, 물 부족으로 인한 식물 스트레스의 초기 징후를 감지할 수 있습니다. 이를 통해 농가는 문제가 광범위하게 퍼지기 전에 대처할 수 있으며, 작물 손실을 줄이고 수확량을 향상시킬 수 있습니다. 문제를 조기에 진단할 수 있는 능력은 생산성을 높일 뿐만 아니라, 농약이나 비료와 같은 화학 투입물의 필요성을 최소화하여 보다 지속가능한 농업 관행에 기여할 수 있습니다.

또한, 영상 기술은 자원 이용의 최적화, 특히 물과 비료 관리에서 매우 중요합니다. 열화상 및 다중 스펙트럼 데이터는 농부들이 토양의 수분량을 모니터링하고 작물이 과부족 없이 관개되는 지역을 파악하는 데 도움이 됩니다. 이 정보를 통해 정밀한 관개 제어가 가능하여 필요한 장소와 시기에만 물을 줄 수 있습니다. 물 부족에 직면한 지역에서는 물 낭비를 줄이고 귀중한 자원을 보존하는 데 있어 이 기술이 매우 큰 효과를 발휘할 수 있습니다. 마찬가지로, 이미징 기술은 비료의 효과를 모니터링하고 영양분이 부족한 지역을 식별하고 그에 따라 비료의 양을 조정하는 데 도움이 됩니다. 영상 기술은 물과 영양분 활용을 최적화하여 폐기물을 최소화하고 환경에 미치는 영향을 줄임으로써 보다 효율적인 농업 관행을 지원합니다.

지속가능한 농업은 더 나은 토지 관리와 토양 보전을 촉진한다는 점에서 영상 기술의 혜택을 누릴 수 있습니다. 항공 사진과 위성사진을 통해 농부들은 토양의 건강 상태를 모니터링하고, 침식 위험이 높은 지역을 파악하여 표토의 황폐화를 방지할 수 있는 대책을 마련할 수 있습니다. 이는 집약적 농업으로 인해 토양이 황폐화되고 침식되는 지역에서 특히 중요합니다. 이미지 기술을 통해 농부들은 토양의 장기적인 건전성을 평가하고, 윤작, 피복작물 재배, 보전 재배 등의 관행에 대한 정보에 입각한 판단을 내릴 수 있습니다. 건강한 토양을 유지함으로써 농부들은 작물의 저항력을 높이고, 화학적 투입물의 필요성을 줄이며, 생물 다양성을 증진시킬 수 있습니다. 이 모든 것이 지속가능한 농업의 중요한 구성요소입니다.

정밀농업에서 영상기술의 또 다른 중요한 응용은 병해충 관리 강화입니다. 고해상도 카메라와 다중 스펙트럼 센서가 장착된 드론은 광활한 농지에서 해충 발생 및 질병 확산 징후를 모니터링할 수 있습니다. 이러한 문제를 조기에 발견하면 농부들은 표적화된 방제 조치를 취할 수 있고, 광범위한 살충제 사용을 줄일 수 있습니다. 이는 화학제품 사용으로 인한 환경 영향을 줄일 뿐만 아니라 유익한 곤충과 꽃가루 매개자 보호에도 도움이 됩니다. 영상 기술을 통해 농부들은 해충과 질병 관리에 있어 보다 적극적인 접근 방식을 취할 수 있으며, 작물 보호를 강화하면서 유해 화학제품에 대한 의존도를 줄일 수 있습니다.

농업의 생산성과 지속가능성을 향상시키는 것 외에도, 이미징 기술은 농가의 수확량 최적화 및 폐기물 감소를 지원함으로써 식량 안보 강화에 기여할 수 있습니다. 작물의 생육 상황을 상세히 파악함으로써 농가는 작물 재배, 관개, 수확 시기를 보다 정확하게 판단할 수 있게 됩니다. 예를 들어, 이미징 데이터는 작물 수확량을 보다 정확하게 예측하여 수확 계획 수립을 개선하고 식품 낭비를 줄일 수 있습니다. 기후변화와 자원 부족과 같은 도전에 직면한 지역에서 이미징 기술은 농업의 회복력을 높이고 안정적인 식량 공급을 보장하기 위한 귀중한 도구를 제공합니다.

정밀농업에서 이미징 기술은 가변 속도 기술(VRT)의 도입을 가능하게 하는 중요한 역할을 하고 있습니다. VRT를 통해 농부들은 밭의 각기 다른 구역의 구체적인 필요에 따라 종자, 비료, 농약 등의 투입량을 조정할 수 있습니다. 이미지 데이터를 활용하면 농가는 토양의 비옥도, 수분량, 작물의 생육 상태 등의 차이를 상세하게 보여주는 지도를 만들 수 있습니다. 이 지도는 투입량을 가변적으로 조정하는 장비의 운영 지침으로 활용되어 농지의 각 부분에 적절한 양의 자원이 공급될 수 있도록 보장합니다. VRT는 현지 상황에 맞는 투입량 조정을 통해 자원 낭비를 줄이고 투입 비용을 절감하며 작물의 종합적인 생산성을 향상시킵니다.

대규모 농업 경영에서 영상 기술은 광활한 토지를 모니터링할 수 있는 확장 가능한 솔루션을 제공합니다. 특히 수천 에이커에 달하는 농장의 경우, 수작업 점검과 같은 전통적인 현장 모니터링 방법은 많은 시간과 노력을 필요로 합니다. 드론, 위성, 고정익 항공기를 기반으로 한 영상 시스템을 통해 농가는 전체 농지를 빠르고 효율적으로 조사할 수 있습니다. 이러한 확장성은 원격지나 접근이 어려운 농지가 있는 지역에서 특히 유용하며, 수작업으로 작물을 모니터링하는 것이 현실적이지 않은 경우에도 유용하게 사용할 수 있습니다. 농장을 조감도로 파악하는 영상 기술은 대규모 농업 경영 전반에 걸쳐 종합적인 관리와 탁월한 의사결정을 가능하게 합니다.

또한, 정밀 축산 농업의 도입에 있어서도 영상 기술은 중요한 역할을 합니다. 시각적 데이터를 통해 가축의 건강 상태와 복지를 모니터링하는 이 방법은 예를 들어 열화상 카메라가 체온을 모니터링하여 동물의 질병이나 스트레스의 초기 징후를 감지할 수 있습니다. 카메라가 탑재된 드론은 방목 패턴 감시, 울타리 상태 확인, 광활한 목초지에서의 가축 이동 추적 등에 활용될 수 있습니다. 영상 기술은 동물의 건강 상태와 행동에 대한 실시간 정보를 제공함으로써 보다 효율적인 축산 관리를 지원하고, 동물 복지와 농장 생산성 향상에 기여합니다.

정밀농업에서 이미징 기술의 성장을 촉진하는 요인은 무엇일까?

정밀농업에서 이미징 기술의 급속한 성장을 촉진하는 요인은 여러 가지가 있습니다. 지속가능한 농업 방식에 대한 수요 증가, 드론 및 위성 기술의 발전, 더 높은 작물 수확량의 필요성, 데이터 분석 플랫폼의 가용성 확대 등을 꼽을 수 있습니다. 주요 촉진요인 중 하나는 지속가능성에 대한 전 세계적인 관심의 증가와 농업의 환경 부하 감소에 대한 필요성이 대두되고 있다는 점입니다. 물 부족, 토양 황폐화, 화학자재 과다 사용에 대한 우려로 인해 농부들은 자원 효율성과 환경 보전을 촉진하는 방법을 도입해야 합니다. 이미징 기술은 농부들에게 작물과 토양의 건강 상태를 보다 효과적으로 모니터링할 수 있는 수단을 제공하여 폐기물을 최소화하고 농약과 비료의 필요성을 줄이는 지속가능한 농업 관행을 가능하게 합니다.

드론과 위성 기술의 발전도 농업 분야의 영상 기술 성장에 크게 기여하고 있습니다. 드론의 가격이 저렴해지고 접근성이 높아짐에 따라 소규모 농가도 항공 영상의 혜택을 누릴 수 있게 되었습니다. 이 드론에는 현재 멀티 스펙트럼 카메라, 하이퍼스펙트럼 카메라 등 첨단 센서가 탑재되어 작물의 건강 상태와 토양 상태에 대한 상세한 데이터를 수집할 수 있습니다. 위성사진도 고해상도와 데이터 수집 빈도가 높아져 농부들이 거의 실시간으로 밭의 상태를 파악할 수 있게 되었습니다. 기술의 고도화와 비용 효율성이 향상됨에 따라 더 많은 농가가 농업 경영을 개선하기 위해 영상 솔루션을 도입하고 있습니다.

세계 인구 증가에 따른 식량 수요 증가에 따라 농작물 수확량 향상을 요구하는 목소리가 높아지는 것도 농업 분야 영상기술의 보급을 촉진하는 요인입니다. 농부들은 한정된 경작지에서 더 많은 식량을 생산해야 한다는 압박에 직면해 있으며, 동시에 기후 변화, 해충, 질병과 같은 문제도 해결해야 합니다. 영상 기술은 작물의 건강 상태, 토양 상태, 환경적 요인에 대한 상세한 정보를 제공하여 농가의 작업 방식을 최적화할 수 있도록 돕습니다. 이 데이터를 활용하여 작물 재배, 관개, 시비, 병충해 방제에 대한 정보에 입각한 판단을 내림으로써 농가는 자원 사용량과 환경에 미치는 영향을 최소화하면서 수확량을 향상시킬 수 있습니다.

데이터 분석 플랫폼의 보급 확대는 정밀농업에서 이미징 기술의 성장을 더욱 가속화하고 있습니다. 클라우드 기반 플랫폼과 AI 기반 분석 도구를 통해 농가는 이미징 시스템에서 수집한 대규모 데이터를 처리하고 분석하여 실용적인 인사이트를 쉽게 추출할 수 있습니다. 이러한 플랫폼은 드론, 위성, 센서 등 여러 소스의 데이터를 통합하여 농장 전체에 대한 종합적인 관점을 제공합니다. 실시간 데이터 분석을 통해 농부들은 추세를 추적하고 결과를 예측하며, 생산성과 지속가능성을 향상시키는 데이터 기반 의사결정을 내릴 수 있습니다. 농업의 빅데이터 활용 능력은 농가의 경영 관리 방식을 변화시키고 있으며, 이미징 기술은 현대 농업에 필수적인 도구가 되고 있습니다.

스마트 농업과 농업 분야에서의 사물인터넷(IoT)의 부상도 이미징 기술의 보급을 촉진하고 있습니다. 토양 센서, 기상 관측 장치, 자동 관개 시스템과 같은 IoT 장치가 이미징 기술과 통합되어 보다 통합된 데이터 기반 농업 접근 방식을 실현하고 있습니다. 이미지 데이터를 다른 IoT 기기의 정보와 결합하여 농부들은 자신의 농지에 대해 더 깊이 이해하고, 농법을 더 정밀하게 조정할 수 있습니다. 이러한 이미지 기술과 IoT의 통합은 정밀농업의 성장을 촉진하고, 농부들이 자원 활용을 최적화하고, 비용을 절감하고, 수확량을 향상시킬 수 있도록 돕고 있습니다.

지속가능한 농업 실천에 대한 정부의 인센티브와 지원 확대도 농업 분야의 이미징 기술 성장을 촉진하는 요인입니다. 전 세계 많은 정부들은 환경의 지속가능성과 식량 안보를 위해 정밀농업 기술의 도입을 장려하고 있습니다. 보조금, 보조금, 기술 지원 프로그램은 농민들이 이미징 기술 및 기타 정밀농업 도구에 투자할 수 있도록 지원하여 농업 분야 전반에 걸쳐 도입이 가속화되고 있습니다.

지속가능성에 대한 수요 증가, 더 높은 작물 수확량의 필요성, 드론 및 위성 기술의 발전, 데이터 분석 플랫폼의 부상으로 정밀농업의 이미징 기술은 지속적으로 성장할 것으로 예상됩니다. 농부들이 작물과 자원을 보다 효율적이고 지속가능한 방식으로 관리할 수 있는 방법을 모색하는 가운데, 이미징 기술은 농업의 미래를 촉진하고 생산성을 향상시키며 증가하는 세계 인구의 식량 안보를 보장하는 데 있어 점점 더 중요한 역할을 하게 될 것입니다.

부문:

기술(멀티스펙트럼, 하이퍼스펙트럼), 제품(카메라, 센서, 소프트웨어, 기타 제품)

조사 대상 기업 예시

  • Bayspec, Inc.
  • MicaSense, Inc.
  • PIXELTEQ
  • Quest Innovations BV
  • Resonon
  • Sentek Sensor Technologies
  • Teledyne DALSA, Inc.
  • Tetracam Inc.
  • XIMEA GmbH

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Market Glass, Inc.는 LLM이나 산업 특화형 SLM을 쿼리하는 일반적인 방식이 아닌, 전 세계 도메인 전문가들이 엄선한 컨텐츠 리포지토리를 구축했습니다. 여기에는 비디오 전사, 블로그, 검색 엔진 조사, 그리고 방대한 양의 기업 데이터, 제품/서비스 데이터, 시장 데이터 등이 포함됩니다.

관세 영향 계수

Market Glass, Inc.가 본사 소재지, 생산기지, 수출입(완제품 및 OEM)을 기반으로 기업의 경쟁 변화를 예측하면서 지리적 시장에 대한 관세의 영향을 반영하였습니다. 이러한 복잡하고 다면적인 시장 현실은 매출원가(COGS) 증가, 수익성 하락, 공급망 재편 등 경쟁사에게 다양한 영향을 미치며, 미시적 및 거시적 시장 역학에도 영향을 미칩니다.

목차

제1장 조사 방법

제2장 주요 요약

  • 시장 개요
  • 주요 기업
  • 시장 동향과 촉진요인
  • 세계 시장 전망

제3장 시장 분석

  • 미국
  • 캐나다
  • 일본
  • 중국
  • 유럽
  • 프랑스
  • 독일
  • 이탈리아
  • 영국
  • 스페인
  • 러시아
  • 기타 유럽
  • 아시아태평양
  • 호주
  • 인도
  • 한국
  • 기타 아시아태평양
  • 라틴아메리카
  • 아르헨티나
  • 브라질
  • 멕시코
  • 기타 라틴아메리카
  • 중동
  • 이란
  • 이스라엘
  • 사우디아라비아
  • 아랍에미리트
  • 기타 중동
  • 아프리카

제4장 경쟁

KSM

Global Imaging Technology for Precision Agriculture Market to Reach US$1.7 Billion by 2030

The global market for Imaging Technology for Precision Agriculture estimated at US$1.1 Billion in the year 2024, is expected to reach US$1.7 Billion by 2030, growing at a CAGR of 7.6% over the analysis period 2024-2030. Multispectral Technology, one of the segments analyzed in the report, is expected to record a 7.0% CAGR and reach US$1.0 Billion by the end of the analysis period. Growth in the Hyperspectral Technology segment is estimated at 8.4% CAGR over the analysis period.

The U.S. Market is Estimated at US$283.3 Million While China is Forecast to Grow at 11.1% CAGR

The Imaging Technology for Precision Agriculture market in the U.S. is estimated at US$283.3 Million in the year 2024. China, the world's second largest economy, is forecast to reach a projected market size of US$412.4 Million by the year 2030 trailing a CAGR of 11.1% over the analysis period 2024-2030. Among the other noteworthy geographic markets are Japan and Canada, each forecast to grow at a CAGR of 3.9% and 6.7% respectively over the analysis period. Within Europe, Germany is forecast to grow at approximately 4.6% CAGR.

Global Imaging Technology for Precision Agriculture Market - Key Trends and Drivers Summarized

Is Imaging Technology the Key to Unlocking Precision Agriculture and Revolutionizing Farming?

Imaging technology is transforming agriculture, but why is it so critical for precision farming and sustainable food production? Imaging technology in precision agriculture refers to the use of advanced tools such as satellite imagery, drones equipped with multispectral or hyperspectral cameras, and machine vision systems to collect data about crops, soil, and environmental conditions. These images are processed and analyzed using artificial intelligence (AI) and machine learning (ML) algorithms to provide farmers with actionable insights. This technology enables farmers to monitor crop health, optimize irrigation, detect pests or diseases early, and make data-driven decisions to maximize yields.

The significance of imaging technology in precision agriculture lies in its ability to provide detailed, real-time information about crop health and field conditions, leading to better resource management and more efficient farming practices. Traditional farming methods often rely on visual inspections and historical data, which can be time-consuming and less accurate. In contrast, imaging technology provides comprehensive, field-wide data, allowing for more precise interventions. Whether it’s identifying nutrient deficiencies, monitoring irrigation needs, or predicting crop yields, imaging technology is rapidly becoming an indispensable tool for modern farming, driving sustainability, improving efficiency, and increasing crop productivity.

How Have Technological Advancements Improved Imaging Technology for Precision Agriculture?

Technological advancements in imaging systems, AI, and data analytics have significantly enhanced the effectiveness of imaging technology in precision agriculture. One of the most impactful advancements is the integration of multispectral and hyperspectral imaging. Unlike traditional cameras, which capture images in the visible spectrum, multispectral and hyperspectral sensors capture data across a broader range of wavelengths, including infrared and ultraviolet. This allows farmers to detect subtle changes in crop health that are not visible to the naked eye, such as water stress, nutrient deficiencies, or early signs of disease. For example, plants reflect light differently when they are stressed, and multispectral imaging can detect these variations, enabling early interventions.

The development of drone technology has also revolutionized the way imaging data is collected in precision agriculture. Drones equipped with high-resolution cameras, multispectral sensors, and thermal imaging systems can capture detailed aerial images of entire fields in real-time. These drones provide farmers with a cost-effective way to survey large areas quickly and gather data that can be analyzed to assess crop health, soil conditions, and irrigation needs. With advancements in drone automation, farmers can now schedule regular flights to monitor crop growth, identify problem areas, and adjust their farming practices accordingly. This real-time data collection allows for more dynamic, responsive farming, improving efficiency and reducing resource waste.

Artificial intelligence (AI) and machine learning (ML) have further enhanced the capabilities of imaging technology in precision agriculture. AI algorithms analyze the vast amounts of data collected by imaging systems to identify patterns and make predictions about crop health, yield potential, and pest or disease outbreaks. These algorithms can process complex datasets much faster and more accurately than humans, providing farmers with actionable insights. For example, AI-powered image recognition systems can identify specific pests or diseases based on visual data, enabling farmers to address issues before they spread. Machine learning models also improve over time, allowing imaging systems to become more precise in their analysis, leading to better decision-making and higher crop yields.

Another key advancement in imaging technology is the use of satellite imagery. High-resolution satellites equipped with advanced sensors provide farmers with detailed images of their fields, allowing them to monitor crop growth and soil health over large areas. Satellite imagery is particularly valuable for large-scale farming operations, where it may not be feasible to survey fields manually or with drones regularly. With improved satellite resolution and more frequent image capture, farmers can now receive near-real-time updates on their crops, helping them make timely decisions about irrigation, fertilization, and pest control. Satellite data is also integrated with AI and ML tools to enhance the accuracy of crop monitoring and prediction.

Thermal imaging technology has also become a valuable tool in precision agriculture, allowing farmers to monitor water stress in crops and optimize irrigation practices. By detecting differences in temperature between plants, thermal cameras can identify areas of the field that are not receiving adequate water. This data enables farmers to adjust irrigation systems in real-time, ensuring that crops receive the necessary water while minimizing water waste. In regions where water is a scarce resource, thermal imaging helps optimize irrigation efficiency, contributing to sustainable farming practices and reducing the environmental impact of agriculture.

The introduction of 3D imaging and LiDAR (Light Detection and Ranging) technology has further advanced precision agriculture by enabling farmers to map terrain and monitor plant growth with greater precision. LiDAR uses laser pulses to measure the distance between the sensor and objects on the ground, creating highly accurate 3D models of the terrain and crop canopy. This data can be used to assess plant height, monitor crop development, and detect variations in plant health across the field. By providing detailed spatial information, 3D imaging and LiDAR help farmers optimize planting density, identify areas that may need additional attention, and plan for harvests more effectively.

Edge computing has also become an important component of modern imaging technology in agriculture. By processing data directly on drones, sensors, or edge devices, farmers can receive immediate feedback without the need to send large datasets to a central server. This reduces latency and enables faster decision-making in the field. For example, a drone equipped with edge computing capabilities can analyze images in real-time to identify areas of the field that require attention, such as sections with pest infestations or water stress, allowing farmers to take action immediately. This real-time processing improves the efficiency of precision farming by enabling rapid responses to changing conditions.

Cloud computing and data analytics platforms have further enhanced the value of imaging technology in agriculture by providing farmers with scalable solutions for storing, processing, and analyzing large datasets. Cloud-based platforms allow farmers to access and analyze imaging data from anywhere, making it easier to monitor fields remotely. These platforms often integrate various data sources, including satellite images, drone footage, and sensor data, into a single dashboard, providing farmers with a comprehensive view of their operations. With cloud-based analytics, farmers can track trends over time, make data-driven decisions, and optimize their farming practices for better yields and resource management.

Why Is Imaging Technology Critical for Precision Agriculture and Sustainable Farming?

Imaging technology is critical for precision agriculture and sustainable farming because it enables farmers to monitor crop health, soil conditions, and environmental factors in real-time, allowing for more efficient and targeted interventions. One of the primary reasons imaging technology is so essential is its ability to provide detailed insights that are not visible to the human eye. Multispectral and hyperspectral imaging systems, for example, can detect early signs of plant stress caused by nutrient deficiencies, disease, or water shortages. This allows farmers to address these issues before they become widespread, reducing crop losses and improving yields. The ability to diagnose problems early not only increases productivity but also minimizes the need for chemical inputs such as pesticides and fertilizers, contributing to more sustainable farming practices.

Imaging technology is also critical for optimizing resource use, particularly when it comes to water and fertilizer management. Thermal imaging and multispectral data help farmers monitor moisture levels in the soil and detect areas where crops may be under or over-watered. This information enables precise irrigation control, ensuring that water is applied only where and when it is needed. In regions facing water scarcity, this can have a profound impact on reducing water waste and preserving valuable resources. Similarly, imaging technology can help farmers monitor the effectiveness of fertilization, identifying areas where nutrients are lacking and adjusting fertilizer application accordingly. By optimizing water and nutrient use, imaging technology supports more efficient farming practices that minimize waste and reduce environmental impact.

Sustainable farming also benefits from imaging technology by promoting better land management and soil conservation. Using aerial and satellite imagery, farmers can monitor soil health, identify erosion-prone areas, and implement measures to protect topsoil from degradation. This is especially important in areas where intensive farming has led to soil depletion or erosion. Imaging technology allows farmers to assess the long-term health of their soil and make informed decisions about crop rotation, cover cropping, and conservation tillage practices. By maintaining healthy soils, farmers can improve crop resilience, reduce the need for chemical inputs, and promote biodiversity, all of which are key components of sustainable agriculture.

Another critical application of imaging technology in precision agriculture is its ability to enhance pest and disease management. Drones equipped with high-resolution cameras and multispectral sensors can monitor large fields for signs of pest infestations or disease outbreaks. By detecting these issues early, farmers can apply targeted treatments, reducing the need for broad-spectrum pesticides. This not only lowers the environmental impact of chemical usage but also helps preserve beneficial insects and pollinators. Imaging technology enables farmers to take a more proactive approach to pest and disease management, improving crop protection while reducing reliance on harmful chemicals.

In addition to improving farm productivity and sustainability, imaging technology also enhances food security by helping farmers optimize yields and reduce waste. With detailed insights into crop growth, farmers can make more informed decisions about planting, irrigation, and harvest timing. For example, imaging data can help farmers predict crop yields more accurately, enabling better planning and reducing food waste during harvest. In regions facing challenges such as climate change or resource shortages, imaging technology provides a valuable tool for improving agricultural resilience and ensuring a stable food supply.

In precision agriculture, imaging technology plays a key role in enabling farmers to implement variable rate technology (VRT). VRT allows farmers to adjust inputs such as seeds, fertilizers, and pesticides based on the specific needs of different areas within a field. Using imaging data, farmers can create detailed maps that highlight variations in soil fertility, moisture levels, and crop health. These maps are then used to guide equipment that applies inputs at variable rates, ensuring that each part of the field receives the right amount of resources. By matching inputs to local conditions, VRT helps reduce waste, lower input costs, and improve overall crop performance.

In large-scale farming operations, imaging technology provides a scalable solution for monitoring vast areas of land. Traditional methods of field monitoring, such as manual inspections, are time-consuming and labor-intensive, especially for farms spanning thousands of acres. Imaging systems, whether based on drones, satellites, or fixed-wing aircraft, enable farmers to survey their entire operation quickly and efficiently. This scalability is particularly valuable in regions with remote or difficult-to-access fields, where it may be impractical to monitor crops manually. By providing a bird’s-eye view of the farm, imaging technology allows for more comprehensive management and better decision-making across large agricultural operations.

Imaging technology also plays a vital role in the adoption of precision livestock farming, where visual data is used to monitor the health and well-being of livestock. Thermal imaging cameras, for example, can detect early signs of illness or stress in animals by monitoring their body temperature. Drones equipped with cameras can also be used to monitor grazing patterns, check fencing, and track livestock movement across large pastures. By providing real-time insights into animal health and behavior, imaging technology supports more efficient livestock management, improving animal welfare and farm productivity.

What Factors Are Driving the Growth of Imaging Technology in Precision Agriculture?

Several factors are driving the rapid growth of imaging technology in precision agriculture, including the increasing demand for sustainable farming practices, advancements in drone and satellite technology, the need for higher crop yields, and the growing availability of data analytics platforms. One of the primary drivers is the growing global focus on sustainability and the need to reduce the environmental impact of agriculture. With concerns about water scarcity, soil degradation, and the overuse of chemical inputs, farmers are under pressure to adopt practices that promote resource efficiency and environmental stewardship. Imaging technology provides farmers with the tools to monitor crops and soil health more effectively, enabling more sustainable farming practices that minimize waste and reduce the need for pesticides and fertilizers.

Advancements in drone and satellite technology have also played a significant role in the growth of imaging technology in agriculture. Drones have become more affordable and accessible, allowing even small-scale farmers to benefit from aerial imaging. These drones are now equipped with more advanced sensors, including multispectral and hyperspectral cameras, enabling them to capture detailed data about crop health and soil conditions. Satellite imagery has also improved, with higher resolution images and more frequent data collection, providing farmers with near-real-time insights into their fields. As the technology becomes more sophisticated and cost-effective, more farmers are adopting imaging solutions to enhance their operations.

The increasing demand for higher crop yields to meet the needs of a growing global population is another factor driving the adoption of imaging technology in agriculture. Farmers are under pressure to produce more food on limited arable land while also dealing with the challenges of climate change, pests, and diseases. Imaging technology helps farmers optimize their practices by providing detailed information about crop health, soil conditions, and environmental factors. By using this data to make informed decisions about planting, irrigation, fertilization, and pest control, farmers can increase their yields while minimizing resource use and environmental impact.

The growing availability of data analytics platforms has further fueled the growth of imaging technology in precision agriculture. Cloud-based platforms and AI-driven analytics tools allow farmers to process and analyze large datasets collected from imaging systems, making it easier to extract actionable insights. These platforms often integrate data from multiple sources, including drones, satellites, and sensors, providing a comprehensive view of the farm. With real-time data analysis, farmers can track trends, predict outcomes, and make data-driven decisions that improve productivity and sustainability. The ability to leverage big data in agriculture is transforming the way farmers manage their operations, making imaging technology an essential tool for modern farming.

The rise of smart farming and the Internet of Things (IoT) in agriculture is also contributing to the increased adoption of imaging technology. IoT devices, such as soil sensors, weather stations, and automated irrigation systems, are being integrated with imaging technology to create a more connected and data-driven approach to farming. By combining imaging data with information from other IoT devices, farmers can gain a deeper understanding of their fields and make more precise adjustments to their farming practices. This integration of imaging technology with IoT is driving the growth of precision agriculture, enabling farmers to optimize resource use, reduce costs, and improve yields.

The availability of government incentives and support for sustainable farming practices is another factor driving the growth of imaging technology in agriculture. Many governments around the world are encouraging the adoption of precision farming technologies to promote environmental sustainability and food security. Subsidies, grants, and technical support programs are helping farmers invest in imaging technology and other precision farming tools, accelerating their adoption across the agricultural sector.

With the increasing demand for sustainability, the need for higher crop yields, advancements in drone and satellite technology, and the rise of data analytics platforms, imaging technology in precision agriculture is poised for continued growth. As farmers seek more efficient and sustainable ways to manage their crops and resources, imaging technology will play an increasingly important role in driving the future of agriculture, improving productivity, and ensuring food security for a growing global population.

SCOPE OF STUDY:

The report analyzes the Imaging Technology for Precision Agriculture market in terms of units by the following Segments, and Geographic Regions/Countries:

Segments:

Technology (Multispectral, Hyperspectral); Product (Camera, Sensors, Software, Other Products)

Geographic Regions/Countries:

World; United States; Canada; Japan; China; Europe (France; Germany; Italy; United Kingdom; Spain; Russia; and Rest of Europe); Asia-Pacific (Australia; India; South Korea; and Rest of Asia-Pacific); Latin America (Argentina; Brazil; Mexico; and Rest of Latin America); Middle East (Iran; Israel; Saudi Arabia; United Arab Emirates; and Rest of Middle East); and Africa.

Select Competitors (Total 44 Featured) -

  • Bayspec, Inc.
  • MicaSense, Inc.
  • PIXELTEQ
  • Quest Innovations BV
  • Resonon
  • Sentek Sensor Technologies
  • Teledyne DALSA, Inc.
  • Tetracam Inc.
  • XIMEA GmbH

AI INTEGRATIONS

We're transforming market and competitive intelligence with validated expert content and AI tools.

Instead of following the general norm of querying LLMs and Industry-specific SLMs, we built repositories of content curated from domain experts worldwide including video transcripts, blogs, search engines research, and massive amounts of enterprise, product/service, and market data.

TARIFF IMPACT FACTOR

Our new release incorporates impact of tariffs on geographical markets as we predict a shift in competitiveness of companies based on HQ country, manufacturing base, exports and imports (finished goods and OEM). This intricate and multifaceted market reality will impact competitors by increasing the Cost of Goods Sold (COGS), reducing profitability, reconfiguring supply chains, amongst other micro and macro market dynamics.

TABLE OF CONTENTS

I. METHODOLOGY

II. EXECUTIVE SUMMARY

  • 1. MARKET OVERVIEW
    • Trade Shocks, Uncertainty, and the Structural Rewiring of the Global Economy
    • How Trump's Tariffs Impact the Market? The Big Question on Everyone's Mind
    • Global Economic Update
    • Imaging Technology for Precision Agriculture - Global Key Competitors Percentage Market Share in 2025 (E)
    • Competitive Market Presence - Strong/Active/Niche/Trivial for Players Worldwide in 2025 (E)
  • 2. FOCUS ON SELECT PLAYERS
  • 3. MARKET TRENDS & DRIVERS
    • Rising Demand for Crop Monitoring and Yield Optimization Drives Growth in Imaging Technology for Precision Agriculture Market
    • Expansion of Smart Farming and Agricultural Automation Spurs Adoption of Imaging Solutions
    • Technological Advancements in Multispectral and Hyperspectral Imaging Propel Innovation in Precision Agriculture
    • Role of Imaging Technology in Enhancing Water and Nutrient Management Strengthens Business Case for Adoption
    • Increasing Focus on Satellite-based Imaging and Drone Surveillance for Agriculture Fuels Market Demand
    • Growth in Use of Imaging Technology for Precision Irrigation and Soil Analysis Expands Market Opportunities
    • Role of Imaging Technology in Supporting Precision Pest Management and Weed Control Strengthens Market Demand
    • Growth in Use of Imaging Technology for Livestock Monitoring and Animal Health Expands Market Reach
  • 4. GLOBAL MARKET PERSPECTIVE
    • TABLE 1: World Recent Past, Current & Future Analysis for Camera by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 2: World Historic Review for Camera by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 3: World 15-Year Perspective for Camera by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2015, 2025 & 2030
    • TABLE 4: World Recent Past, Current & Future Analysis for Sensors by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 5: World Historic Review for Sensors by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 6: World 15-Year Perspective for Sensors by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2015, 2025 & 2030
    • TABLE 7: World Recent Past, Current & Future Analysis for Software by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 8: World Historic Review for Software by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 9: World 15-Year Perspective for Software by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2015, 2025 & 2030
    • TABLE 10: World Recent Past, Current & Future Analysis for Other Products by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 11: World Historic Review for Other Products by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 12: World 15-Year Perspective for Other Products by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2015, 2025 & 2030
    • TABLE 13: World Recent Past, Current & Future Analysis for Multispectral by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 14: World Historic Review for Multispectral by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 15: World 15-Year Perspective for Multispectral by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2015, 2025 & 2030
    • TABLE 16: World Recent Past, Current & Future Analysis for Hyperspectral by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 17: World Historic Review for Hyperspectral by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 18: World 15-Year Perspective for Hyperspectral by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2015, 2025 & 2030
    • TABLE 19: World Imaging Technology for Precision Agriculture Market Analysis of Annual Sales in US$ Thousand for Years 2015 through 2030
    • TABLE 20: World Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 21: World Historic Review for Imaging Technology for Precision Agriculture by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 22: World 15-Year Perspective for Imaging Technology for Precision Agriculture by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets for Years 2015, 2025 & 2030

III. MARKET ANALYSIS

  • UNITED STATES
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in the United States for 2025 (E)
    • TABLE 23: USA Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 24: USA Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 25: USA 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 26: USA Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 27: USA Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 28: USA 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • CANADA
    • TABLE 29: Canada Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 30: Canada Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 31: Canada 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 32: Canada Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 33: Canada Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 34: Canada 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • JAPAN
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Japan for 2025 (E)
    • TABLE 35: Japan Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 36: Japan Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 37: Japan 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 38: Japan Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 39: Japan Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 40: Japan 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • CHINA
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in China for 2025 (E)
    • TABLE 41: China Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 42: China Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 43: China 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 44: China Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 45: China Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 46: China 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • EUROPE
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Europe for 2025 (E)
    • TABLE 47: Europe Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 48: Europe Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 49: Europe 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 50: Europe Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 51: Europe Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 52: Europe 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
    • TABLE 53: Europe Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Geographic Region - France, Germany, Italy, UK, Spain, Russia and Rest of Europe Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 54: Europe Historic Review for Imaging Technology for Precision Agriculture by Geographic Region - France, Germany, Italy, UK, Spain, Russia and Rest of Europe Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 55: Europe 15-Year Perspective for Imaging Technology for Precision Agriculture by Geographic Region - Percentage Breakdown of Value Sales for France, Germany, Italy, UK, Spain, Russia and Rest of Europe Markets for Years 2015, 2025 & 2030
  • FRANCE
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in France for 2025 (E)
    • TABLE 56: France Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 57: France Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 58: France 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 59: France Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 60: France Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 61: France 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • GERMANY
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Germany for 2025 (E)
    • TABLE 62: Germany Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 63: Germany Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 64: Germany 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 65: Germany Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 66: Germany Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 67: Germany 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • ITALY
    • TABLE 68: Italy Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 69: Italy Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 70: Italy 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 71: Italy Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 72: Italy Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 73: Italy 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • UNITED KINGDOM
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in the United Kingdom for 2025 (E)
    • TABLE 74: UK Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 75: UK Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 76: UK 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 77: UK Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 78: UK Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 79: UK 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • SPAIN
    • TABLE 80: Spain Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 81: Spain Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 82: Spain 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 83: Spain Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 84: Spain Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 85: Spain 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • RUSSIA
    • TABLE 86: Russia Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 87: Russia Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 88: Russia 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 89: Russia Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 90: Russia Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 91: Russia 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • REST OF EUROPE
    • TABLE 92: Rest of Europe Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 93: Rest of Europe Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 94: Rest of Europe 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 95: Rest of Europe Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 96: Rest of Europe Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 97: Rest of Europe 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • ASIA-PACIFIC
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Asia-Pacific for 2025 (E)
    • TABLE 98: Asia-Pacific Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 99: Asia-Pacific Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 100: Asia-Pacific 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 101: Asia-Pacific Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 102: Asia-Pacific Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 103: Asia-Pacific 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
    • TABLE 104: Asia-Pacific Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Geographic Region - Australia, India, South Korea and Rest of Asia-Pacific Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 105: Asia-Pacific Historic Review for Imaging Technology for Precision Agriculture by Geographic Region - Australia, India, South Korea and Rest of Asia-Pacific Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 106: Asia-Pacific 15-Year Perspective for Imaging Technology for Precision Agriculture by Geographic Region - Percentage Breakdown of Value Sales for Australia, India, South Korea and Rest of Asia-Pacific Markets for Years 2015, 2025 & 2030
  • AUSTRALIA
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Australia for 2025 (E)
    • TABLE 107: Australia Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 108: Australia Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 109: Australia 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 110: Australia Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 111: Australia Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 112: Australia 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • INDIA
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in India for 2025 (E)
    • TABLE 113: India Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 114: India Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 115: India 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 116: India Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 117: India Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 118: India 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • SOUTH KOREA
    • TABLE 119: South Korea Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 120: South Korea Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 121: South Korea 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 122: South Korea Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 123: South Korea Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 124: South Korea 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • REST OF ASIA-PACIFIC
    • TABLE 125: Rest of Asia-Pacific Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 126: Rest of Asia-Pacific Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 127: Rest of Asia-Pacific 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 128: Rest of Asia-Pacific Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 129: Rest of Asia-Pacific Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 130: Rest of Asia-Pacific 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • LATIN AMERICA
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Latin America for 2025 (E)
    • TABLE 131: Latin America Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 132: Latin America Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 133: Latin America 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 134: Latin America Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 135: Latin America Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 136: Latin America 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
    • TABLE 137: Latin America Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Geographic Region - Argentina, Brazil, Mexico and Rest of Latin America Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 138: Latin America Historic Review for Imaging Technology for Precision Agriculture by Geographic Region - Argentina, Brazil, Mexico and Rest of Latin America Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 139: Latin America 15-Year Perspective for Imaging Technology for Precision Agriculture by Geographic Region - Percentage Breakdown of Value Sales for Argentina, Brazil, Mexico and Rest of Latin America Markets for Years 2015, 2025 & 2030
  • ARGENTINA
    • TABLE 140: Argentina Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 141: Argentina Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 142: Argentina 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 143: Argentina Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 144: Argentina Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 145: Argentina 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • BRAZIL
    • TABLE 146: Brazil Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 147: Brazil Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 148: Brazil 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 149: Brazil Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 150: Brazil Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 151: Brazil 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • MEXICO
    • TABLE 152: Mexico Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 153: Mexico Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 154: Mexico 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 155: Mexico Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 156: Mexico Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 157: Mexico 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • REST OF LATIN AMERICA
    • TABLE 158: Rest of Latin America Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 159: Rest of Latin America Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 160: Rest of Latin America 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 161: Rest of Latin America Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 162: Rest of Latin America Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 163: Rest of Latin America 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • MIDDLE EAST
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Middle East for 2025 (E)
    • TABLE 164: Middle East Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 165: Middle East Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 166: Middle East 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 167: Middle East Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 168: Middle East Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 169: Middle East 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
    • TABLE 170: Middle East Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Geographic Region - Iran, Israel, Saudi Arabia, UAE and Rest of Middle East Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
    • TABLE 171: Middle East Historic Review for Imaging Technology for Precision Agriculture by Geographic Region - Iran, Israel, Saudi Arabia, UAE and Rest of Middle East Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 172: Middle East 15-Year Perspective for Imaging Technology for Precision Agriculture by Geographic Region - Percentage Breakdown of Value Sales for Iran, Israel, Saudi Arabia, UAE and Rest of Middle East Markets for Years 2015, 2025 & 2030
  • IRAN
    • TABLE 173: Iran Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 174: Iran Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 175: Iran 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 176: Iran Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 177: Iran Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 178: Iran 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • ISRAEL
    • TABLE 179: Israel Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 180: Israel Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 181: Israel 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 182: Israel Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 183: Israel Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 184: Israel 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • SAUDI ARABIA
    • TABLE 185: Saudi Arabia Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 186: Saudi Arabia Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 187: Saudi Arabia 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 188: Saudi Arabia Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 189: Saudi Arabia Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 190: Saudi Arabia 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • UNITED ARAB EMIRATES
    • TABLE 191: UAE Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 192: UAE Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 193: UAE 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 194: UAE Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 195: UAE Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 196: UAE 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • REST OF MIDDLE EAST
    • TABLE 197: Rest of Middle East Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 198: Rest of Middle East Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 199: Rest of Middle East 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 200: Rest of Middle East Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 201: Rest of Middle East Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 202: Rest of Middle East 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030
  • AFRICA
    • Imaging Technology for Precision Agriculture Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Africa for 2025 (E)
    • TABLE 203: Africa Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 204: Africa Historic Review for Imaging Technology for Precision Agriculture by Product - Camera, Sensors, Software and Other Products Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 205: Africa 15-Year Perspective for Imaging Technology for Precision Agriculture by Product - Percentage Breakdown of Value Sales for Camera, Sensors, Software and Other Products for the Years 2015, 2025 & 2030
    • TABLE 206: Africa Recent Past, Current & Future Analysis for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
    • TABLE 207: Africa Historic Review for Imaging Technology for Precision Agriculture by Technology - Multispectral and Hyperspectral Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2015 through 2023 and % CAGR
    • TABLE 208: Africa 15-Year Perspective for Imaging Technology for Precision Agriculture by Technology - Percentage Breakdown of Value Sales for Multispectral and Hyperspectral for the Years 2015, 2025 & 2030

IV. COMPETITION

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