시장보고서
상품코드
1756025

세계의 우주 착륙기 및 탐사기 시장 : 유형별, 용도별, 최종사용자별, 지역별, 기회, 예측(2018-2032년)

Global Space Lander and Rover Market Assessment, By Type, By Application, By End-user, By Region, Opportunities and Forecast, 2018-2032F

발행일: | 리서치사: Markets & Data | 페이지 정보: 영문 232 Pages | 배송안내 : 3-5일 (영업일 기준)

    
    
    




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세계의 우주 착륙기 및 탐사기 시장 규모는 예측 기간인 2025-2032년에 8.56%의 CAGR로 확대하며, 2024년 7억 2,712만 달러에서 2032년에는 14억 270만 달러로 성장할 것으로 예측됩니다. 우주 착륙기 및 탐사기 시장은 최근 AI 기반 자율성 및 로봇 공학의 발전으로 인해 다른 어떤 시장과 비교할 수 없을 정도로 빠르게 변화하고 있습니다.

자율성과 로봇 공학, 그리고 정확한 항법 능력으로 인해 우주 착륙선 및 탐사선 시장은 비교할 수 없을 정도로 빠른 속도로 변화하고 있습니다. 자율성을 통해 착륙선과 탐사선은 실시간으로 판단을 내리고 예측할 수 없는 지형에 지속적으로 적응할 수 있습니다. 새로운 소재는 탐사선의 내구성을 향상시켜 극한의 온도와 방사능에도 견딜 수 있게 해줍니다. 또한 적응형 지형 분석의 발전으로 어려운 지형에서의 기동성이 크게 향상되었으며, AI 기반 이미지 처리와 과학 연구를 위한 자율적인 샘플 수집을 통해 심우주 탐사까지 가능하게 하는 전례 없는 속도로 과학을 발전시킬 수 있습니다.

새로운 실시간 통신 시스템은 데이터 전송을 개선하고, 숨겨진 위험과 물질적 위험을 실시간으로 전달할 수 있으며, 탐사 및 과학적 발견에 대한 원활한 중앙 제어를 위해 인간의 협력 체제를 강화하고 있습니다. 현대의 착륙선과 탐사선의 이러한 자유구동형 기술 발전은 행성간 공간의 한계를 뛰어넘어 다양한 천체에서 원거리 및 장시간 임무를 수행할 수 있도록 하고 있습니다. 결국, 기술 발전과 AI의 통합으로 인해 인류는 점점 더 효율적으로 심우주 탐사를 할 수 있게 되었습니다. 이러한 발전은 전례 없는 수준의 발견과 과학을 촉진하고 먼 세계와 우주 자체에 대한 더 깊은 이해를 가능하게 합니다.

예를 들어 2025년 6월, Ispace의 우주선 RESILIENCE는 달 탐사 프로그램의 일환으로 역사적인 달 착륙을 시도했으며, ESA의 세계 지상국 네트워크는 RESILIENCE와 도쿄에 위치한 Ispace의 미션 컨트롤 센터와의 원활한 통신을 지원했습니다. 2025년 1월 SpaceX Falcon 9로 발사된 이 미션은 프리고리스의 바다에 착륙하는 것을 목표로 달의 기술과 탐사를 추진했습니다.

세계의 우주 착륙기 및 탐사기 시장에 대해 조사했으며, 시장의 개요와 유형별, 용도별, 최종사용자별, 지역별 동향 및 시장에 참여하는 기업의 개요 등을 제공하고 있습니다.

목차

제1장 프로젝트 범위와 정의

제2장 조사 방법

제3장 미국 관세의 영향

제4장 개요

제5장 고객의 소리

제6장 세계의 우주 착륙기 및 탐사기 시장 전망, 2018-2032년

  • 시장 규모 분석과 예측
  • 시장 점유율 분석과 예측
    • 유형별
      • 달 착륙기
      • 화성 탐사기
      • 소행성 착륙기
    • 용도별
      • 과학 탐사
      • 자원 추출
      • 혹성 조사
    • 최종사용자별
      • 우주 기관
      • 민간 우주 기업
      • 연구기관
    • 지역별
      • 북미
      • 유럽
      • 아시아태평양
      • 남미
      • 중동 및 아프리카
    • 기업별 시장 점유율 분석(상위 5사 및 기타 - 금액별, 2024년)
  • 2024년 시장 맵 분석

제7장 북미의 우주 착륙기 및 탐사기 시장 전망, 2018-2032년

  • 시장 규모 분석과 예측
  • 시장 점유율 분석과 예측
  • 국가별 시장 평가
    • 미국
    • 캐나다
    • 멕시코

제8장 유럽의 우주 착륙기 및 탐사기 시장 전망, 2018-2032년

  • 독일
  • 프랑스
  • 이탈리아
  • 영국
  • 러시아
  • 네덜란드
  • 스페인
  • 튀르키예
  • 폴란드

제9장 아시아태평양의 우주 착륙기·탐사기 시장 전망, 2018-2032년

  • 인도
  • 중국
  • 일본
  • 호주
  • 베트남
  • 한국
  • 인도네시아
  • 필리핀

제10장 남미의 우주 착륙기 및 탐사기 시장 전망, 2018-2032년

  • 브라질
  • 아르헨티나

제11장 중동 및 아프리카의 우주 착륙기 및 탐사기 시장 전망, 2018-2032년

  • 사우디아라비아
  • 아랍에미리트
  • 남아프리카공화국

제12장 Porter's Five Forces 분석

제13장 PESTLE 분석

제14장 시장 역학

  • 시장 촉진요인
  • 시장이 해결해야 할 과제

제15장 시장 동향과 발전

제16장 정책과 규제 상황

제17장 사례 연구

제18장 경쟁 구도

  • 시장 리더 TOP 5의 경쟁 매트릭스
  • 참여 기업 TOP 5의 SWOT 분석
  • 시장 주요 기업 TOP 10의 상황
    • National Aeronautics and Space Administration(NASA)
    • Space Exploration Technologies Corp.(SpaceX)
    • Blue Origin, LLC
    • Lockheed Martin Corporation
    • Northrop Grumman Corporation
    • Airbus SE
    • Thales Alenia Space S.p.A.
    • Maxar Technologies Holdings Inc.
    • MDA Ltd.
    • Honeybee Robotics, Inc.

제19장 전략적 제안

제20장 조사회사 소개·면책사항

KSA 25.07.02

Global space lander and rover market is projected to witness a CAGR of 8.56% during the forecast period 2025-2032, growing from USD 727.12 million in 2024 to USD 1402.70 million in 2032. The space lander and rover market is changing at an unmatched pace, driven by recent capabilities in AI-powered

autonomy and robotics, along with precise navigation capabilities. Autonomy allows landers and rovers to make real-time decisions for continuous adaptability to terrain as unpredictable as might be expected. New materials make these vehicles more durable than ever, enabling them to withstand extreme temperatures and radiation. In addition, advances in adaptive terrain analysis enable much better mobility over difficult terrains. AI-based imaging and autonomous sample collection for scientific research are also allowing these systems to facilitate science at an unprecedented speed that enables deep space exploration as well.

New real-time communication systems allow for improved data transfer, which allows hidden or material hazards to be communicated in real time, thus enhancing human collaboration toward seamless central control over exploration and scientific discovery. These free-driven advancements in technology for modern landers and rovers are pushing the limits of interplanetary space and quite simply enabling these vehicles to operate in distant and long-duration missions on a variety of celestial bodies. Ultimately, a significant surge in technological advancement and the integration of AI are enabling humanity to explore deep space with ever-increasing efficiency. This progress facilitates discovery and science at an unprecedented level, allowing for a deeper understanding of distant worlds and the universe itself.

For instance, in June 2025, Ispace's RESILIENCE spacecraft attempted a historic Moon landing as part of its lunar exploration program. ESA's global ground station network facilitated seamless communication between RESILIENCE and Ispace's Mission Control Center in Tokyo. The mission, launched on SpaceX Falcon 9 in January 2025, aimed to land on Mare Frigoris, advancing lunar technology and exploration.

Market Expansion Driven by Space Lander and Rover Innovations

The space lander and rover market is experiencing substantial growth driven by innovation in autonomous systems, robotics, and precise navigation systems. Sophisticated technologies for adaptive terrain analysis, AI-based mobility, and energy-efficient propulsion systems can enhance mission success and lifecycle. In addition, the government and private space agencies are making significant investments in low-cost intelligent landers and rovers to support lunar and planetary missions. As innovations develop, they further create different opportunities for sustainable deep-space exploration, enabling scientific discoveries and future colonization.

For instance, in March 2025, Lunar Outpost's MAPP rover became the first commercial exploration vehicle to touch down near the Moon's south pole, completing an eight-day journey from Earth. The rover traveled aboard the Athena lander, launched by Intuitive Machines (IM), marking another milestone in private lunar exploration.

Collaborations Between Players Introduce Global Space Lander and Rover Market Opportunities

The space lander and rover market is innovating due to an increase in collaborative efforts between space agencies, companies, and research institutions. Joint initiatives between NASA, ESA, and commercial entities such as SpaceX, Blue Origin, Astrobotic, and other companies are accelerating autonomous navigation, mobility through AI, and modular designs of landers. Joint initiatives allow for cost-sharing, risk-reduction, and technology deployment that make exploration missions efficient and scalable. New partnerships between robotics companies and aerospace manufacturers mostly center around adaptable terrain, energy-efficient propulsion, and real-time communication systems for next-generation planetary exploration.

For instance, in January 2025, Thales Alenia Space (Thales Alenia Space S.p.A.) announced a contract worth nearly USD 900 million to develop and deliver the Lunar Descent Element (LDE) for Argonaut, the European Space Agency's cargo lander slated for missions to the Moon starting in the 2030s. The contract includes mission design and integration of the LDE, which would be responsible for transporting and landing the spacecraft on the Moon.

Dominance Of Lunar Landers Enhances Market Growth

Lunar landers are leading the way in this market due to the introduction of recent technological advances in autonomous navigation, AI-enabled mobility, and modular lander designs. Growing investment from various government space agencies and private enterprises has propelled the demand for more intelligent, cost-effective landers that can support scientific research, resource extraction and infrastructure development. Increasingly ambitious lunar missions are spurring innovations in propulsion systems, adaptive terrain analysis, and real-time communications technologies that will redefine sustainable lunar exploration. In addition, companies in the market are planning to invest significantly to address different challenges and expand their market portfolio, coupled with market share, which is further projected to drive the market growth in the forecast period.

For instance, in January 2025, Houston-based Intuitive Machines secured USD 2.5 million from NASA to study cargo transport challenges on the Moon, supporting the Artemis program. The company launched its lunar lander aboard SpaceX Falcon 9 to deliver NASA technology and commercial payloads to the Mons Mouton plateau. In September 2024, it secured a USD 4.8 billion contract to provide communication and navigation services for near-space missions, with funding extending through September 2029. These strategic collaborations enhance lunar logistics and mobility, advancing exploration efforts for future Moon and Mars missions.

North America Dominates the Global Space Lander and Rover Market

North America is the strongest contributor to the space lander and rover market, driven by government space programs, commercial endeavors, and defense-related programs. The region leads in artificial intelligence (AI)- enabled autonomy, robotics, and navigation with precision and maneuverability, which allows for efficient planetary exploration. Recent breakthroughs in adaptive terrain reasoning and energy-efficient propulsion will ultimately trickle down to support successful missions. The focus on accelerated progress is heightened in the collaboration of research institutes and aerospace innovators supporting commendable programs for the moon and other planetary explorations. With the rising demand for economic, intelligent landers and rovers, North America will continue to be a part of the deep space exploration processes, influencing not only the future of planetary missions but with the hopes of interstellar exploration. In addition, research organizations are supporting different missions and enhancing the capabilities of space landers and rovers, which further drives the global market growth in the forecast period.

For instance, in February 2025, NASA announced partnership proposals from U.S. companies to support the VIPER Moon rover mission, aiming to advance lunar landing and resource prospecting capabilities. Under a Cooperative Research and Development Agreement, selected partners integrate and land VIPER on the Moon, conducting a science campaign while ensuring open data sharing.

Impact of U.S. Tariffs on Global Space Lander and Rover Market

Higher Costs: Tariffs on aerospace components increase production costs and will affect the affordability of global space missions.

Supply Chain Disruptions: Import restrictions limit the availability of specialized materials used in the development of landers and rovers, slowing development.

Market Realignment: Countries are looking to supplier alternatives and want less reliance on U.S. technology and develop capacity locally.

Investment Changes: Higher costs may deter private investor engagement and slow innovation and commercialization of space exploration.

Key Players Landscape and Outlook

The space lander and rover market continues to evolve with the influence of government space agencies, commercial space enterprises, and research institutes that are fueling innovation and exploration. The ecosystem continues to evolve with emerging technologies, which are enabling increased autonomy using AI, robotics, and precise navigation technologies to maximize the efficiency and sustainability of space missions. The future is bright with expected increased investment in lunar and martian missions that will stimulate demand for affordable, intelligent landers and rovers. With an increased level of global collaboration, the market is poised for exponential growth, supporting deep-space exploration and interplanetary research.

For instance, in March 2025, the European Space Agency's (ESA) Director of Human and Robotic Exploration and the Japan Aerospace Exploration Agency's (JAXA) Vice President for Exploration and Human Spaceflight signed a new statement of intent focused on Moon and Mars activities. This statement marks their intention towards a step forward in space exploration cooperation between ESA and JAXA and lays the groundwork for expanded collaboration between the two agencies in advancing science, technology and international partnerships.

Table of Contents

1. Project Scope and Definitions

2. Research Methodology

3. Impact of U.S. Tariffs

4. Executive Summary

5. Voice of Customers

  • 5.1. Respondent Demographics
  • 5.2. Brand Awareness

6. Global Space Lander and Rover Market Outlook, 2018-2032F

  • 6.1. Market Size Analysis & Forecast
    • 6.1.1. By Value
  • 6.2. Market Share Analysis & Forecast
    • 6.2.1. By Type
      • 6.2.1.1. Lunar Landers
      • 6.2.1.2. Mars Rovers
      • 6.2.1.3. Asteroid Landers
    • 6.2.2. By Application
      • 6.2.2.1. Scientific Exploration
      • 6.2.2.2. Resource Extraction
      • 6.2.2.3. Planetary Research
    • 6.2.3. By End-user
      • 6.2.3.1. Space Agencies
      • 6.2.3.2. Private Space Companies
      • 6.2.3.3. Research Institutions
    • 6.2.4. By Region
      • 6.2.4.1. North America
      • 6.2.4.2. Europe
      • 6.2.4.3. Asia-Pacific
      • 6.2.4.4. South America
      • 6.2.4.5. Middle East and Africa
    • 6.2.5. By Company Market Share Analysis (Top 5 Companies and Others - By Value, 2024)
  • 6.3. Market Map Analysis, 2024
    • 6.3.1. By Type
    • 6.3.2. By Application
    • 6.3.3. By End-user
    • 6.3.4. By Region

7. North America Space Lander and Rover Market Outlook, 2018-2032F

  • 7.1. Market Size Analysis & Forecast
    • 7.1.1. By Value
  • 7.2. Market Share Analysis & Forecast
    • 7.2.1. By Type
      • 7.2.1.1. Lunar Landers
      • 7.2.1.2. Mars Rovers
      • 7.2.1.3. Asteroid Landers
    • 7.2.2. By Application
      • 7.2.2.1. Scientific Exploration
      • 7.2.2.2. Resource Extraction
      • 7.2.2.3. Planetary Research
    • 7.2.3. By End-user
      • 7.2.3.1. Space Agencies
      • 7.2.3.2. Private Space Companies
      • 7.2.3.3. Research Institutions
    • 7.2.4. By Country Share
      • 7.2.4.1. United States
      • 7.2.4.2. Canada
      • 7.2.4.3. Mexico
  • 7.3. Country Market Assessment
    • 7.3.1. United States Space Lander and Rover Market Outlook, 2018-2032F*
      • 7.3.1.1. Market Size Analysis & Forecast
        • 7.3.1.1.1. By Value
      • 7.3.1.2. Market Share Analysis & Forecast
        • 7.3.1.2.1. By Type
          • 7.3.1.2.1.1. Lunar Landers
          • 7.3.1.2.1.2. Mars Rovers
          • 7.3.1.2.1.3. Asteroid Landers
        • 7.3.1.2.2. By Application
          • 7.3.1.2.2.1. Scientific Exploration
          • 7.3.1.2.2.2. Resource Extraction
          • 7.3.1.2.2.3. Planetary Research
        • 7.3.1.2.3. By End-user
          • 7.3.1.2.3.1. Space Agencies
          • 7.3.1.2.3.2. Private Space Companies
          • 7.3.1.2.3.3. Research Institutions
    • 7.3.2. Canada
    • 7.3.3. Mexico

All segments will be provided for all regions and countries covered

8. Europe Space Lander and Rover Market Outlook, 2018-2032F

  • 8.1. Germany
  • 8.2. France
  • 8.3. Italy
  • 8.4. United Kingdom
  • 8.5. Russia
  • 8.6. Netherlands
  • 8.7. Spain
  • 8.8. Turkey
  • 8.9. Poland

9. Asia-Pacific Space Lander and Rover Market Outlook, 2018-2032F

  • 9.1. India
  • 9.2. China
  • 9.3. Japan
  • 9.4. Australia
  • 9.5. Vietnam
  • 9.6. South Korea
  • 9.7. Indonesia
  • 9.8. Philippines

10. South America Space Lander and Rover Market Outlook, 2018-2032F

  • 10.1. Brazil
  • 10.2. Argentina

11. Middle East and Africa Space Lander and Rover Market Outlook, 2018-2032F

  • 11.1. Saudi Arabia
  • 11.2. UAE
  • 11.3. South Africa

12. Porter's Five Forces Analysis

13. PESTLE Analysis

14. Market Dynamics

  • 14.1. Market Drivers
  • 14.2. Market Challenges

15. Market Trends and Developments

16. Policy and Regulatory Landscape

17. Case Studies

18. Competitive Landscape

  • 18.1. Competition Matrix of Top 5 Market Leaders
  • 18.2. SWOT Analysis for Top 5 Players
  • 18.3. Key Players Landscape for Top 10 Market Players
    • 18.3.1. National Aeronautics and Space Administration (NASA)
      • 18.3.1.1. Company Details
      • 18.3.1.2. Key Management Personnel
      • 18.3.1.3. Products
      • 18.3.1.4. Financials
      • 18.3.1.5. Key Market Focus and Geographical Presence
      • 18.3.1.6. Recent Developments/Collaborations/Partnerships/Mergers and Acquisition
    • 18.3.2. Space Exploration Technologies Corp. (SpaceX)
    • 18.3.3. Blue Origin, LLC
    • 18.3.4. Lockheed Martin Corporation
    • 18.3.5. Northrop Grumman Corporation
    • 18.3.6. Airbus SE
    • 18.3.7. Thales Alenia Space S.p.A.
    • 18.3.8. Maxar Technologies Holdings Inc.
    • 18.3.9. MDA Ltd.
    • 18.3.10. Honeybee Robotics, Inc.

Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.

19. Strategic Recommendations

20. About Us and Disclaimer

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