시장보고서
상품코드
2104737

전력망 강화 기술 시장 : 기술별, 제공별, 용도별, 최종사용자별, 지역별 - 시장 규모, 업계 역학, 기회 분석 및 예측(2026-2035년)

Global Grid Enhancing Technologies Market By Technology, Offering, Application, End User, Region - Market Size, Industry Dynamics, Opportunity Analysis and Forecast For 2026-2035

발행일: | 리서치사: 구분자 Astute Analytica | 페이지 정보: 영문 280 Pages | 배송안내 : 1-2일 (영업일 기준)

    
    
    



가격
PDF (Single User License) help
PDF 보고서를 1명이 이용할 수 있는 라이선스입니다. 텍스트 등의 Copy & Paste 및 인쇄가 불가능합니다.
US $ 4,250 금액 안내 화살표 ₩ 6,110,000
PDF & Excel (Multi User License) help
PDF & Excel 보고서를 동일 기업내 7명까지 이용할 수 있는 라이선스입니다. 파일 내 텍스트 등의 Copy & Paste 가능하지만 인쇄는 불가합니다. 또한 6개월간 이용 가능한 인터랙티브 시장 인텔리전스 대시보드도 함께 제공됩니다.
US $ 5,250 금액 안내 화살표 ₩ 7,548,000
PDF, Excel & PPT (Corporate User License) help
PDF·Excel·PPT 보고서를 동일 기업 모든 분이 이용할 수 있는 라이선스입니다. 파일 내 텍스트 등의 Copy & Paste, 인쇄가 가능합니다. 또한 1년간 이용 가능한 인터랙티브 시장 인텔리전스 대시보드도 함께 제공됩니다.
US $ 6,400 금액 안내 화살표 ₩ 9,201,000
※ 부가세 별도
한글목차
영문목차
※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

세계 전력망 강화 기술(GETs) 시장은 전력 회사 및 에너지 관련 이해관계자들이 그리드 현대화, 재생에너지 통합, 송전 효율 향상을 점점 더 중요시함에 따라 강력한 성장을 이루고 있습니다. 2025년에 약 20억 달러 규모로 예상되는 이 시장은 2035년까지 160억 달러에 달할 것으로 전망되며, 2026년부터 2035년까지의 예측 기간 동안 연평균 성장률(CAGR) 23.3%로 확대될 것으로 예상됩니다.

시장 확장을 주도하는 주요 요인은 급속히 증가하는 재생에너지를 전력망에 통합해야 하는 시급한 필요성입니다. 풍력 및 태양광발전을 포함한 더 깨끗한 에너지원으로의 전 세계적 전환은, 변동성이 큰 발전 패턴이나 지리적으로 분산된 에너지 자원에 대응하도록 설계되지 않은 기존 송전 시스템에 큰 과제를 안겨주고 있습니다. 재생에너지의 계통연계 대기 증가, 송전 병목 현상 및 혼잡 문제로 인해, 그리드 운영자들은 네트워크 용량을 확대하기 위한 보다 신속하고 비용 효율적인 방법을 모색해야 한다는 압박을 점점 더 강하게 받고 있습니다.

주목할 만한 시장 동향

전력망 강화 기술(GETs) 시장은 송전 효율 향상, 전력망 운영 최적화, 재생에너지 통합 가속화를 위한 첨단 솔루션을 개발하고 있는 전 세계 에너지 기술 리더와 전문 혁신가들의 협력을 통해 형성되고 있습니다. 지멘스 AG는 에너지 인프라, 자동화, 디지털 그리드 솔루션 분야의 풍부한 전문 지식을 바탕으로 GETs 시장을 주도하는 주요 기업 중 하나입니다.

제너럴 일렉트릭(GE)은 신뢰성 향상, 전력 흐름 최적화, 그리고 시스템 전반의 효율 개선을 목표로 하는 종합적인 스마트 그리드 솔루션을 제공함으로써, 그리드 현대화 분야에서 강력한 입지를 유지하고 있습니다. 슈나이더 일렉트릭은 디지털 에너지 솔루션과 AI를 활용한 그리드 관리 플랫폼을 통해 전력 사업의 현대화를 추진하고 있습니다.

ABB는 전력 시스템 및 자동화 기술에 대한 전문 지식과 에너지 분야 전반에 걸친 전략적 제휴를 통해 GETs 시장에서의 입지를 강화하고 있습니다. LineVision은 주로 동적 선로 정격(DLR) 기술에 중점을 둔 전문 혁신 기업으로, 전력 사업자가 기존 송전 인프라의 활용도를 높이는 데 도움이 되는 첨단 모니터링 솔루션을 제공하고 있습니다.

주요 성장요인

심각한 전력망 과부하와 운영 비용 상승은 전력망 강화 기술(GETs) 시장의 성장을 가속화하는 주요 요인이 되고 있습니다. 데이터센터, 산업 전기화, 전기자동차, 디지털 인프라에 의해 주도되는 전력 수요의 급증은 기존 전력망에 전례 없는 압박을 가하고 있습니다. 동시에 재생에너지 프로젝트 도입이 가속화되면서 대규모 풍력 및 태양광발전이 송전 용량에 대한 접속을 기다리는 상황이 되어, 계통연계에 있어 중대한 과제가 발생하고 있습니다. 이러한 복합적인 압박으로 인해 주요 송전 회랑 전반에 걸쳐 병목 현상이 발생하고 있으며, 전력 수송의 효율성이 제한되고 시스템 운영 비용이 증가하고 있습니다.

새로운 성장 기회의 동향

인공지능(AI)과 디지털 트윈 기술의 통합은 전력망 강화 기술(GETs) 시장에서 성장을 위한 중요한 새로운 기회가 되고 있습니다. 재생에너지 발전 도입, 분산형 발전, 전기화, 그리고 수요 패턴의 변화로 인해 전력 시스템이 점점 더 복잡해지는 가운데, 전력 사업자들은 운영 현황의 가시화, 의사결정의 고도화, 그리고 그리드 성능의 최적화를 도모하기 위해 첨단 디지털 솔루션을 모색하고 있습니다. AI를 활용한 플랫폼과 디지털 트윈 기능은 전력망 운영자가 방대한 양의 실시간 데이터를 분석하고, 네트워크의 동작을 시뮬레이션하며, 효율적인 에너지 관리를 위해 보다 정확한 의사결정을 내릴 수 있게 해주는 강력한 도구로 부상하고 있습니다. AI를 활용한 그리드 플랫폼을 통해 전력 회사는 혼잡 관리, 부하 예측, 고장 감지, 송전 최적화와 같은 중요한 운영 프로세스를 자동화할 수 있게 되었습니다.

최적화의 장벽

사내의 위험 회피 성향과 뿌리 깊은 조직적 사고 방식은 전력망 강화 기술(GETs) 시장의 성장을 저해할 수 있는 중대한 과제로 대두되고 있습니다. 많은 전통적인 전력 사업자들은 그동안 안정성, 예측 가능성, 그리고 검증된 운영 관행을 우선시하는 극히 보수적인 틀 안에서 운영되어 왔습니다. 그 결과, 기존의 정적인 그리드 관리 방식에서 실시간으로 데이터 기반이며 동적으로 최적화된 시스템으로의 전환은, 새로운 기술이 추가적인 복잡성과 운영상의 불확실성을 초래한다고 여기는 이해관계자들의 저항에 직면할 가능성이 있습니다. 기존 전력 회사의 운영 모델은 고정된 송전 정격, 수년까지 확립된 조사 기법, 그리고 광범위한 조건에서 신뢰성을 확보하기 위해 설계된 보수적인 인프라 관리 관행에 의존해 왔습니다.

목차

제1장 주요 요약 : 세계의 전력망 강화 기술 시장

제2장 조사 방법 및 조사 프레임워크

제3장 세계의 전력망 강화 기술 시장 개요

제4장 세계의 전력망 강화 기술 시장 분석

제5장 세계의 전력망 강화 기술 시장 분석

제6장 북미 시장 분석

제7장 유럽 시장 분석

제8장 아시아태평양 시장 분석

제9장 중동 및 아프리카 시장 분석

제10장 남미 시장 분석

제11장 기업 개요

제12장 부록

KSM

The global Grid Enhancing Technologies (GETs) market is experiencing strong growth as utilities and energy stakeholders increasingly prioritize grid modernization, renewable energy integration, and improved transmission efficiency. The market, valued at approximately USD 2.0 billion in 2025, is projected to reach USD 16 billion by 2035, expanding at a compound annual growth rate (CAGR) of 23.3% during the forecast period from 2026 to 2035.

A primary factor driving market expansion is the urgent need to integrate rapidly increasing volumes of renewable energy into electricity networks. The global transition toward cleaner energy sources, including wind and solar power, is creating substantial challenges for traditional transmission systems that were not designed to handle highly variable generation patterns and geographically distributed energy resources. Growing renewable interconnection queues, transmission bottlenecks, and congestion issues are increasing pressure on grid operators to find faster and more cost-effective methods of expanding network capacity.

Noteworthy Market Developments

The Grid Enhancing Technologies (GETs) market is being shaped by a combination of global energy technology leaders and specialized innovators that are developing advanced solutions to improve transmission efficiency, optimize grid operations, and accelerate renewable energy integration. Siemens AG is one of the leading players in the GETs market, leveraging its extensive expertise in energy infrastructure, automation, and digital grid solutions.

General Electric maintains a strong presence in the grid modernization landscape by providing comprehensive smart grid solutions designed to enhance reliability, optimize electricity flows, and improve overall system efficiency. Schneider Electric is advancing utility modernization through its digital energy solutions and AI-enabled grid management platforms.

ABB has strengthened its position in the GETs market through its expertise in power systems, automation technologies, and strategic collaborations across the energy sector. LineVision is a specialized innovator focused primarily on Dynamic Line Rating (DLR) technology, providing advanced monitoring solutions that help utilities increase the utilization of existing transmission infrastructure.

Core Growth Drivers

Severe transmission congestion and rising operational costs represent a major factor accelerating the growth of the Grid Enhancing Technologies (GETs) market. The rapid increase in electricity demand, driven by data centers, industrial electrification, electric vehicles, and digital infrastructure, has placed unprecedented pressure on existing transmission networks. At the same time, the accelerated deployment of renewable energy projects has created significant interconnection challenges, with large volumes of wind and solar generation waiting for access to transmission capacity. These combined pressures are creating bottlenecks across critical transmission corridors, limiting the efficient movement of electricity and increasing system operating costs.

Emerging Opportunity Trends

The integration of artificial intelligence (AI) and digital twin technologies represents a significant emerging opportunity for growth in the Grid Enhancing Technologies (GETs) market. As power systems become increasingly complex due to renewable energy integration, distributed generation, electrification, and evolving demand patterns, utilities are seeking advanced digital solutions to improve operational visibility, enhance decision-making, and optimize grid performance. AI-enabled platforms and digital twin capabilities are emerging as powerful tools that allow grid operators to analyze vast amounts of real-time data, simulate network behavior, and make more informed decisions for efficient energy management. AI-powered grid platforms are enabling utilities to automate critical operational processes, including congestion management, load forecasting, fault detection, and transmission optimization.

Barriers to Optimization

Internal risk aversion and entrenched organizational mindsets represent a significant challenge that may restrain the growth of the Grid Enhancing Technologies (GETs) market. Many traditional utility organizations have historically operated within highly conservative frameworks that prioritize stability, predictability, and proven operational practices. As a result, the transition from conventional static grid management approaches to real-time, data-driven, and dynamically optimized systems can face resistance from stakeholders who perceive newer technologies as introducing additional complexity or operational uncertainty. The legacy utility operating model has traditionally relied on fixed transmission ratings, long-established planning methodologies, and conservative infrastructure management practices designed to ensure reliability under a wide range of conditions.

Detailed Market Segmentation

By Technology, Dynamic Line Rating (DLR) accounted for the largest share of the Grid Enhancing Technologies (GETs) market by technology in 2025 and continues to lead the segment due to its ability to enhance transmission efficiency without requiring extensive infrastructure expansion. Utilities worldwide are increasingly prioritizing DLR solutions as they seek cost-effective methods to increase grid capacity, improve reliability, and accelerate renewable energy integration. The technology enables transmission operators to move beyond traditional static line ratings by dynamically adjusting transmission capacity based on real-time environmental and operational conditions.

By Offering, Hardware and sensors accounted for the largest share of the Grid Enhancing Technologies (GETs) market by offering in 2025 and continue to play a critical role in shaping market development. The dominance of this segment is driven by the essential requirement for accurate, real-time grid visibility, which forms the foundation for effective deployment of advanced grid optimization solutions. As utilities transition toward more intelligent and flexible power networks, the demand for physical monitoring infrastructure, including sensors, measurement devices, and field hardware, has increased significantly to support data-driven decision-making and improve transmission system performance.

By Application, Congestion relief accounted for the largest share of the Grid Enhancing Technologies (GETs) market by application in 2025 and continues to represent the primary growth driver in 2026. The increasing penetration of renewable energy sources, particularly variable generation from wind and solar assets, has intensified pressure on existing transmission networks. Many power grids were not originally designed to accommodate the rapid growth of decentralized and intermittent renewable generation, resulting in transmission bottlenecks, overloaded corridors, and operational constraints. As a result, utilities and grid operators are increasingly adopting GET solutions to improve transmission efficiency, optimize existing infrastructure, and alleviate congestion without relying solely on costly new transmission construction.

By End User, Transmission utilities represent the leading end-user segment driving the growth of the Grid Enhancing Technologies (GETs) market, accounting for the largest share of adoption due to their critical role in managing high-voltage electricity networks. These operators are facing increasing challenges associated with aging transmission infrastructure, rising electricity demand, and the rapid integration of renewable energy resources. As power systems transition toward cleaner energy generation, transmission utilities are under growing pressure to maximize the capacity, reliability, and flexibility of existing grid assets without relying exclusively on expensive and time-intensive transmission line expansions.

Segment Breakdown

By Technology

  • Dynamic Line Rating
  • Advanced Power Flow Control
  • Topology Optimization
  • Advanced Conductors

By Offering

  • Hardware/Sensors
  • Software/Analytics
  • Services

By Application

  • Congestion Relief
  • Renewable Interconnection
  • Data Center Load Integration
  • Reliability & Resilience

By End User

  • Transmission Utilities
  • System Operators (ISO/RTO)
  • Renewable/DC Developers

By Region

  • North America
  • The U.S.
  • Canada
  • Mexico
  • Europe
  • Western Europe
  • The UK
  • Germany
  • France
  • Italy
  • Spain
  • Rest of Western Europe
  • Eastern Europe
  • Poland
  • Russia
  • Rest of Eastern Europe
  • Asia Pacific
  • China
  • India
  • Japan
  • Australia & New Zealand
  • South Korea
  • ASEAN
  • Rest of Asia Pacific
  • Middle East & Africa (MEA)
  • Saudi Arabia
  • South Africa
  • UAE
  • Rest of MEA
  • South America
  • Argentina
  • Brazil
  • Rest of South America

Geography Breakdown

  • North America maintained the dominant regional position in the global Grid Enhancing Technologies (GETs) market in 2025, supported by strong regulatory momentum, significant government investments, and the urgent need to modernize aging electricity transmission infrastructure. The region's market leadership has been driven by increasing pressure on utilities and grid operators to improve transmission efficiency, integrate renewable energy resources, and enhance grid reliability without relying solely on costly and time-consuming infrastructure expansion.
  • The United States has emerged as the primary contributor to North America's market dominance, supported by extensive federal initiatives aimed at improving transmission capacity and accelerating the adoption of advanced grid management solutions. The introduction of stricter regulatory requirements, including initiatives such as the Federal Energy Regulatory Commission's Order 881, has encouraged transmission operators to move beyond traditional static line rating approaches and adopt more dynamic methods for managing grid capacity.
  • Canada is also making a significant contribution to regional market growth through widespread provincial grid modernization initiatives and investments in advanced transmission management technologies. Canadian utilities are increasingly deploying grid-enhancing solutions, including advanced topology optimization software, to improve the efficiency and reliability of large-scale transmission networks. These technologies are particularly valuable for optimizing extensive hydroelectric transmission corridors that connect geographically dispersed energy resources with major demand centers.

Leading Market Participants

  • ABB Ltd.
  • Cisco Systems Inc
  • Hitachi Energy Ltd.
  • International Business Machines Corporation
  • General Electric Company
  • Schneider Electric SE
  • Mitsubishi Electric Corporation
  • Siemens Energy AG
  • National Grid plc
  • Eaton Corporation plc
  • Quanta Technology LLC
  • Honeywell International Inc.
  • Nexans S.A.
  • DNV AS
  • Mercom India Private Limited
  • Sentient Energy Inc.
  • Reactive Technologies Limited
  • Itron Inc., Ampacimon S.A.
  • Smart Wires Inc.
  • Kinectrics Inc.
  • Camlin Energy Ltd.
  • Enbala Power Networks Inc.
  • LineVision Inc.
  • NR Electric Co. Ltd.
  • Other Prominent Players

Table of Content

Chapter 1. Executive Summary: Global Grid-Enhancing Technologies Market

Chapter 2. Research Methodology & Research Framework

  • 2.1. Research Objective
  • 2.2. Product Overview
  • 2.3. Market Segmentation
  • 2.4. Qualitative Research
    • 2.4.1. Primary & Secondary Sources
  • 2.5. Quantitative Research
    • 2.5.1. Primary & Secondary Sources
  • 2.6. Breakdown of Primary Research Respondents, By Region
  • 2.7. Assumption for Study
  • 2.8. Market Size Estimation
  • 2.9. Data Triangulation

Chapter 3. Global Grid-Enhancing Technologies Market Overview

  • 3.1. Industry Value Chain Analysis
    • 3.1.1. Sensor, LiDAR & Advanced-Conductor Component Suppliers
    • 3.1.2. GETs Hardware (DLR Sensors, Power-Flow Controllers) Manufacturers
    • 3.1.3. Analytics, Topology-Optimization & Grid Software Developers
    • 3.1.4. Integration, Deployment & Managed-Service Providers
    • 3.1.5. End Users (Transmission Utilities, System Operators (ISO/RTO), Renewable/DC Developers)
  • 3.2. Industry Outlook
    • 3.2.1. Overview of the Global Grid-Enhancing Technologies (GETs) Industry
    • 3.2.2. Dynamic Line Rating, Advanced Power-Flow Control & Topology Optimization for Existing Grids
    • 3.2.3. FERC Orders 1920 / 2023 / 881, Congestion-Cost Savings & Renewable Interconnection Queues
  • 3.3. PESTLE Analysis
  • 3.4. Porter's Five Forces Analysis
    • 3.4.1. Bargaining Power of Suppliers
    • 3.4.2. Bargaining Power of Buyers
    • 3.4.3. Threat of Substitutes
    • 3.4.4. Threat of New Entrants
    • 3.4.5. Degree of Competition
  • 3.5. Market Growth and Outlook
    • 3.5.1. Market Revenue Estimates and Forecast (US$ Mn), 2020-2035
    • 3.5.2. Price Trend Analysis, By Technology

Chapter 4. Global Grid-Enhancing Technologies Market Analysis

  • 4.1. Competition Dashboard
    • 4.1.1. Market Concentration Rate
    • 4.1.2. Company Market Share Analysis (Value %), 2025
    • 4.1.3. Competitor Mapping & Benchmarking

Chapter 5. Global Grid-Enhancing Technologies Market Analysis

  • 5.1. Market Dynamics and Trends
    • 5.1.1. Growth Drivers
    • 5.1.2. Restraints
    • 5.1.3. Opportunity
    • 5.1.4. Key Trends
  • 5.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 5.2.1. By Technology
      • 5.2.1.1. Key Insights
        • 5.2.1.1.1. Dynamic Line Rating
        • 5.2.1.1.2. Advanced Power Flow Control
        • 5.2.1.1.3. Topology Optimization
        • 5.2.1.1.4. Advanced Conductors
    • 5.2.2. By Offering
      • 5.2.2.1. Key Insights
        • 5.2.2.1.1. Hardware/Sensors
        • 5.2.2.1.2. Software/Analytics
        • 5.2.2.1.3. Services
    • 5.2.3. By Application
      • 5.2.3.1. Key Insights
        • 5.2.3.1.1. Congestion Relief
        • 5.2.3.1.2. Renewable Interconnection
        • 5.2.3.1.3. Data Center Load Integration
        • 5.2.3.1.4. Reliability & Resilience
    • 5.2.4. By End User
      • 5.2.4.1. Key Insights
        • 5.2.4.1.1. Transmission Utilities
        • 5.2.4.1.2. System Operators (ISO/RTO)
        • 5.2.4.1.3. Renewable/DC Developers
    • 5.2.5. By Region
      • 5.2.5.1. Key Insights
        • 5.2.5.1.1. North America
          • 5.2.5.1.1.1. The U.S.
          • 5.2.5.1.1.2. Canada
          • 5.2.5.1.1.3. Mexico
        • 5.2.5.1.2. Europe
          • 5.2.5.1.2.1. Western Europe
            • 5.2.5.1.2.1.1. The UK
            • 5.2.5.1.2.1.2. Germany
            • 5.2.5.1.2.1.3. France
            • 5.2.5.1.2.1.4. Italy
            • 5.2.5.1.2.1.5. Spain
            • 5.2.5.1.2.1.6. Rest of Western Europe
          • 5.2.5.1.2.2. Eastern Europe
            • 5.2.5.1.2.2.1. Poland
            • 5.2.5.1.2.2.2. Russia
            • 5.2.5.1.2.2.3. Rest of Eastern Europe
        • 5.2.5.1.3. Asia Pacific
          • 5.2.5.1.3.1. China
          • 5.2.5.1.3.2. India
          • 5.2.5.1.3.3. Japan
          • 5.2.5.1.3.4. Australia & New Zealand
          • 5.2.5.1.3.5. South Korea
          • 5.2.5.1.3.6. ASEAN
          • 5.2.5.1.3.7. Rest of Asia Pacific
        • 5.2.5.1.4. Middle East & Africa (MEA)
          • 5.2.5.1.4.1. Saudi Arabia
          • 5.2.5.1.4.2. South Africa
          • 5.2.5.1.4.3. UAE
          • 5.2.5.1.4.4. Rest of MEA
        • 5.2.5.1.5. South America
          • 5.2.5.1.5.1. Argentina
          • 5.2.5.1.5.2. Brazil
          • 5.2.5.1.5.3. Rest of South America

Chapter 6. North America Market Analysis

  • 6.1. Market Dynamics and Trends
    • 6.1.1. Growth Drivers
    • 6.1.2. Restraints
    • 6.1.3. Opportunity
    • 6.1.4. Key Trends
  • 6.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 6.2.1. Key Insights
      • 6.2.1.1. By Technology
      • 6.2.1.2. By Offering
      • 6.2.1.3. By Application
      • 6.2.1.4. By End User
      • 6.2.1.5. By Country

Chapter 7. Europe Market Analysis

  • 7.1. Market Dynamics and Trends
    • 7.1.1. Growth Drivers
    • 7.1.2. Restraints
    • 7.1.3. Opportunity
    • 7.1.4. Key Trends
  • 7.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 7.2.1. Key Insights
      • 7.2.1.1. By Technology
      • 7.2.1.2. By Offering
      • 7.2.1.3. By Application
      • 7.2.1.4. By End User
      • 7.2.1.5. By Country

Chapter 8. Asia Pacific Market Analysis

  • 8.1. Market Dynamics and Trends
    • 8.1.1. Growth Drivers
    • 8.1.2. Restraints
    • 8.1.3. Opportunity
    • 8.1.4. Key Trends
  • 8.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 8.2.1. Key Insights
      • 8.2.1.1. By Technology
      • 8.2.1.2. By Offering
      • 8.2.1.3. By Application
      • 8.2.1.4. By End User
      • 8.2.1.5. By Country

Chapter 9. Middle East & Africa Market Analysis

  • 9.1. Market Dynamics and Trends
    • 9.1.1. Growth Drivers
    • 9.1.2. Restraints
    • 9.1.3. Opportunity
    • 9.1.4. Key Trends
  • 9.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 9.2.1. Key Insights
      • 9.2.1.1. By Technology
      • 9.2.1.2. By Offering
      • 9.2.1.3. By Application
      • 9.2.1.4. By End User
      • 9.2.1.5. By Country

Chapter 10. South America Market Analysis

  • 10.1. Market Dynamics and Trends
    • 10.1.1. Growth Drivers
    • 10.1.2. Restraints
    • 10.1.3. Opportunity
    • 10.1.4. Key Trends
  • 10.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 10.2.1. Key Insights
      • 10.2.1.1. By Technology
      • 10.2.1.2. By Offering
      • 10.2.1.3. By Application
      • 10.2.1.4. By End User
      • 10.2.1.5. By Country

Chapter 11. Company Profile (Company Overview, Financial Matrix, Key Product landscape, Key Personnel, Key Competitors, Contact Address, and Business Strategy Outlook)

  • 11.1. ABB Ltd.
  • 11.2. Cisco Systems Inc
  • 11.3. Hitachi Energy Ltd.
  • 11.4. International Business Machines Corporation
  • 11.5. General Electric Company
  • 11.6. Schneider Electric SE
  • 11.7. Mitsubishi Electric Corporation
  • 11.8. Siemens Energy AG
  • 11.9. National Grid plc
  • 11.10. Eaton Corporation plc
  • 11.11. Quanta Technology LLC
  • 11.12. Honeywell International Inc.
  • 11.13. Nexans S.A.
  • 11.14. DNV AS
  • 11.15. Mercom India Private Limited
  • 11.16. Sentient Energy Inc.
  • 11.17. Reactive Technologies Limited
  • 11.18. Itron Inc.
  • 11.19. Ampacimon S.A.
  • 11.20. Smart Wires Inc.
  • 11.21. Kinectrics Inc.
  • 11.22. Camlin Energy Ltd.
  • 11.23. Enbala Power Networks Inc.
  • 11.24. LineVision Inc.
  • 11.25. NR Electric Co. Ltd.
  • 11.26. Other Prominent Players

Chapter 12. Annexure

  • 12.1. List of Secondary Sources
  • 12.2. Key Country Markets- Macro Economic Outlook/Indicators
샘플 요청 목록
0 건의 상품을 선택 중
목록 보기
전체삭제
문의
원하시는 정보를
찾아 드릴까요?
문의주시면 필요한 정보를
신속하게 찾아드릴게요.
02-2025-2992
email
문의하기