Satellite Attitude and Orbit Control System Market SIZE & SHARE ANALYSIS - GROWTH TRENDS & FORECASTS UP TO 2030

The Satellite Attitude and Orbit Control System Market is segmented by Application (Communication, Earth Observation, Navigation, Space Observation, Others), by Satellite Mass (10-100kg, 100-500kg, 500-1000kg, Below 10 Kg, above 1000kg), by Orbit Class (GEO, LEO, MEO), by End User (Commercial, Military & Government) and by Region (Asia-Pacific, Europe, North America). Market Value in USD is presented. Key Data Points observed include spending on space programs in USD by region; and, the count of satellite launches by satellite launch mass.

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Satellite Attitude and Orbit Control System Market SIZE & SHARE ANALYSIS - GROWTH TRENDS & FORECASTS UP TO 2030

Satellite Attitude and Orbit Control System Market Size

Satellite Attitude and Orbit Control System Market Summary
Study Period 2017 - 2030
Base Year For Estimation 2024
Forecast Data Period 2025 - 2030
Market Size (2025) USD 3.07 Billion
Market Size (2030) USD 5.74 Billion
CAGR (2025 - 2030) 13.34 %
Market Concentration High

Major Players

Satellite Attitude and Orbit Control System Market Major Players

*Disclaimer: Major Players sorted in no particular order

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Satellite Attitude and Orbit Control System Market Analysis

The Satellite Attitude and Orbit Control System Market size is estimated at 3.07 billion USD in 2025, and is expected to reach 5.74 billion USD by 2030, growing at a CAGR of 13.34% during the forecast period (2025-2030).

The satellite attitude and orbit control system (AOCS) industry is experiencing transformative growth driven by increasing commercial space activities and technological advancements. The commercial sector has emerged as the dominant force in satellite deployment, with approximately 94% of satellites launched between 2017 and 2022 being for commercial purposes. Major space agencies are significantly increasing their investments to support this growth, as evidenced by the U.S. government's allocation of USD 62 billion for space programs in 2022. This surge in investment is facilitating the development of more sophisticated attitude control system technologies and enabling broader participation in space activities.


The industry is witnessing a significant shift toward Low Earth Orbit (LEO) satellite deployments, with over 4,100 LEO satellites manufactured and launched across regions between 2017 and 2022. This trend is particularly driven by major private sector initiatives in satellite communications. In December 2022, SpaceX received FCC approval to launch 7,500 satellites for its Gen2 Starlink constellation, demonstrating the growing commercial interest in large-scale satellite deployments. These developments are pushing AOCS manufacturers to develop more advanced and efficient satellite control systems capable of managing complex satellite constellations.


The European space sector is demonstrating a strong commitment to advancing satellite attitude and orbit control technologies through increased funding and collaborative initiatives. The European Space Agency's proposed budget of EUR 18.5 billion for 2023-2025 reflects the region's dedication to maintaining its competitive edge in space technology. This commitment is translating into technological advancement, as evidenced by Jena-Optronik's selection in February 2023 to provide AOCS sensors for the ARROW family of small satellites, showcasing the industry's focus on developing more sophisticated attitude control systems.


The AOCS market is experiencing rapid technological evolution, particularly in the development of advanced control systems for various orbital applications. In December 2022, Maxar Technologies' selection of Jena Optronik's ASTRO CL star tracker for their new proliferated LEO satellite platform demonstrates the industry's push toward more precise and reliable satellite attitude control systems. These technological advancements are enabling more accurate satellite positioning and orientation control, which is crucial for the success of modern satellite missions across communication, Earth observation, and navigation applications.

Segment Analysis: Application

Communication Segment in Satellite Attitude and Orbit Control System Market

The Communication segment dominates the global Satellite Attitude and Orbit Control System market, commanding approximately 79% market share in 2024. This significant market position is driven by the increasing demand for satellite-based communication services, particularly for telecommunications, internet connectivity, and broadcasting applications. The segment's growth is further bolstered by the surge in satellite constellation deployments for global connectivity initiatives and the increasing emphasis on enhancing communication capabilities in remote and underserved areas. Major space agencies and commercial operators continue to invest heavily in communication satellites, requiring sophisticated satellite attitude control systems to maintain precise positioning and stability for optimal signal transmission and coverage.

Market Analysis of Satellite Attitude and Orbit Control System Market: Chart for Application

Navigation Segment in Satellite Attitude and Orbit Control System Market

The Navigation segment is emerging as the fastest-growing segment in the Satellite AOCS market, projected to expand at approximately 37% CAGR from 2024 to 2029. This remarkable growth is attributed to the increasing demand for precise positioning and navigation services across various sectors, including maritime, aviation, and ground transportation. The segment's expansion is driven by the growing adoption of satellite-based navigation systems for commercial applications and the increasing integration of navigation capabilities in modern vehicles and devices. The surge in commercial shipping activities and the rising emphasis on autonomous navigation systems are further propelling the demand for advanced attitude control systems in navigation satellites.

Remaining Segments in Application Segmentation

The Earth Observation segment plays a crucial role in environmental monitoring, disaster management, and resource mapping applications, requiring precise satellite attitude control for accurate imaging and data collection. Space Observation satellites focus on studying celestial bodies and space phenomena, demanding highly sophisticated AOCS for maintaining precise orientation during observations. The Others segment encompasses various specialized applications such as technology demonstration, scientific research, and educational missions, each contributing to the diverse requirements for satellite attitude and orbit control systems. These segments collectively drive innovation in AOCS technology, pushing the boundaries of precision and reliability in satellite operations.

Segment Analysis: Satellite Mass

100-500kg Segment in Satellite Attitude and Orbit Control System Market

The 100-500kg segment dominates the global satellite attitude and orbit control system market, commanding approximately 82% market share in 2024. This significant market position is primarily driven by the extensive deployment of minisatellites for various applications, including remote sensing, communications, scientific research, and technology demonstrations. The segment's dominance is further reinforced by the increasing adoption of these satellites by both commercial and government sectors, particularly for Earth observation and communication purposes. During recent years, numerous minisatellites have been placed in orbit, with nearly all operating in LEO and a small fraction in GEO, demonstrating the versatility and widespread application of this satellite class. The segment's strong market presence is supported by continuous technological advancements in attitude control systems, making these satellites more efficient and cost-effective for various space missions.

10-100kg Segment in Satellite Attitude and Orbit Control System Market

The 10-100kg segment is experiencing remarkable growth in the satellite attitude and orbit control system market, with a projected growth rate of approximately 29% from 2024 to 2029. This exceptional growth is driven by the increasing demand for microsatellites across various applications, particularly in Earth observation and remote sensing missions. The segment's rapid expansion is fueled by technological advancements in miniaturized AOCS components, making these systems more efficient and reliable for smaller satellite platforms. The growth is further accelerated by the rising adoption of microsatellites by commercial entities and research institutions, who value their shorter development cycles and cost-effectiveness. The segment is witnessing significant innovations in attitude control technologies, including advanced three-axis attitude determination and control systems, which are enhancing the capabilities and performance of these satellites.

Remaining Segments in Satellite Mass Segmentation

The remaining segments in the satellite mass classification include the 500-1000kg, above 1000kg, and below 10kg categories, each serving distinct market needs and applications. The 500-1000kg segment caters to medium-sized satellites, which are particularly valuable for communications and Earth observation missions requiring greater payload capacity. The above 1000kg segment represents large satellites primarily designed for complex, long-duration missions with extensive operational requirements. The below 10kg segment, comprising nanosatellites and CubeSats, is gaining traction in educational and research applications, offering cost-effective solutions for space exploration and technology demonstration missions. These segments collectively contribute to the market's diversity, offering solutions across different operational requirements and mission objectives.

Segment Analysis: Orbit Class

LEO Segment in Satellite Attitude and Orbit Control System Market

Low Earth Orbit (LEO) dominates the satellite attitude and orbit control system market, accounting for approximately 73% of the total market value in 2024. This significant market share is driven by the increasing adoption of LEO satellites for various applications including communications, navigation, Earth observation, and military surveillance. The segment's dominance is further strengthened by major satellite constellation projects from companies like SpaceX, OneWeb, and Amazon, who are deploying thousands of satellites in LEO to provide global broadband coverage. The demand for satellite positioning systems in LEO satellites is particularly high due to the need for precise positioning and stability in the challenging low-earth orbital environment, where satellites face various perturbations including atmospheric drag and gravitational effects.

MEO Segment in Satellite Attitude and Orbit Control System Market

The Medium Earth Orbit (MEO) segment is projected to experience the fastest growth in the satellite AOCS market, with an expected CAGR of approximately 17% from 2024 to 2029. This robust growth is primarily driven by the increasing deployment of navigation satellites and communication systems in MEO. The segment's growth is supported by various scientific and research organizations launching small satellites in MEO for Earth observation and space weather monitoring. The expansion is further accelerated by technological advancements in MEO satellite capabilities, particularly in global navigation systems and satellite-based communication systems like Inmarsat and Iridium. The segment is witnessing increased investments in developing sophisticated orbit control systems specifically designed for MEO applications.

Remaining Segments in Orbit Class

The Geostationary Earth Orbit (GEO) segment continues to play a crucial role in the satellite AOCS market, particularly for applications requiring consistent coverage over specific geographical areas. GEO satellites, while requiring less frequent attitude adjustments compared to LEO and MEO satellites, still demand highly sophisticated AOCS systems to maintain their precise positioning above the equator. These satellites are particularly important for telecommunications, weather monitoring, and broadcasting applications. The GEO segment's stability requirements and long operational lifespans drive the development of specialized AOCS solutions that can provide reliable performance over extended periods.

Segment Analysis: End User

Commercial Segment in Satellite Attitude and Orbit Control System Market

The commercial segment dominates the global satellite attitude and orbit control system market, holding approximately 68% market share in 2024. This significant market position is driven by the increasing adoption of satellites for various commercial applications including telecommunications, navigation, Earth observation, and remote sensing. The surge in demand is particularly notable from private space companies and commercial satellite operators who are launching multiple satellite constellations for global communication networks and internet services. Companies like SpaceX, OneWeb, and Amazon are actively expanding their satellite networks, contributing substantially to the commercial segment's dominance. The segment's growth is further supported by technological advancements in satellite miniaturization and the increasing accessibility of space technology to private enterprises.

Military & Government Segment in Satellite Attitude and Orbit Control System Market

The military and government segment is experiencing robust growth with an expected growth rate of approximately 17% during 2024-2029. This accelerated growth is driven by increasing investments in space-based defense capabilities and surveillance systems across major nations. The segment's expansion is fueled by the growing importance of satellite technology in national security, military communications, and intelligence gathering operations. Various defense organizations worldwide are focusing on developing advanced satellite systems with sophisticated attitude and orbit control capabilities for precise positioning and enhanced operational effectiveness. The increasing emphasis on space-based military assets and the modernization of existing satellite infrastructure are expected to sustain this segment's growth momentum throughout the forecast period.

Remaining Segments in End User Segmentation

The other end-user segment, primarily comprising research institutions, educational organizations, and non-governmental entities, plays a vital role in advancing satellite technology and exploring new applications. This segment is characterized by innovative research projects and experimental satellite missions that often serve as testing grounds for new AOCS technologies. Research institutions and universities are increasingly participating in small satellite development programs, contributing to technological advancement in the field. These organizations often collaborate with commercial and government entities, creating a synergistic effect that benefits the entire industry. Their focus on developing cost-effective solutions and exploring novel applications continues to influence the broader satellite AOCS market.

Satellite Attitude and Orbit Control System Market Geography Segment Analysis

Satellite Attitude and Orbit Control System Market in Asia-Pacific

The Asia-Pacific region has established itself as a significant player in the satellite attitude and orbit control system market, holding approximately 23% of the global market share in 2024. The region's market is characterized by strong technological advancement and innovation, particularly in countries like China and Japan. China has positioned itself as a major force in the global satellite market, focusing extensively on microsatellites for various applications, including Earth observation, remote sensing, and communication. Japan's advanced technological expertise and unwavering commitment to space exploration continue to drive market growth. The region's space programs are supported by well-established organizations like the Japan Aerospace Exploration Agency (JAXA), which leads various satellite development and launch initiatives. The increasing focus on miniaturization of AOCS components for small satellites has become a key trend in the region. Additionally, manufacturers are actively developing advanced technologies such as tetrahedral reaction wheel systems for nanosatellite stabilization. The presence of multiple governmental, commercial, and other players has created a robust ecosystem for satellite manufacturing and satellite control development in the region.

Market Analysis of Satellite Attitude and Orbit Control System Market: Forecasted Growth Rate by Region

Satellite Attitude and Orbit Control System Market in Europe

The European satellite attitude and orbit control system market has demonstrated remarkable resilience and innovation, achieving approximately 14% growth from 2019 to 2024. The region's space industry is particularly strong in satellite telecommunications, which represents more than 60% of the satellite business in Europe. The market's sustainability is crucial for the global satellite telecommunications sector, with Europe maintaining a significant position in the space segment. France, the United Kingdom, and Russia emerge as the primary countries driving demand for attitude and orbit control system. The European market faces increasing technical and commercial pressure from both American manufacturers and emerging space powers, which has led to continuous innovation and maintenance of high competence levels. The presence of major players like Sener Group, Jena-Optronik GmbH, and Thales has created a competitive landscape that fosters technological advancement. The region's strong focus on research and development, coupled with collaborative efforts between various space agencies and private entities, has established Europe as a key hub for AOCS innovation and development.

Satellite Attitude and Orbit Control System Market in North America

The North American satellite attitude and orbit control system market is projected to experience substantial growth of approximately 92% from 2024 to 2029, highlighting the region's dominant position in the global space industry. The United States continues to be the primary driver of market growth, maintaining its position as the largest producer of satellites annually. The region's space industry comprises a robust ecosystem of government agencies, private companies, and research institutes, creating a highly competitive and innovative environment. The market is characterized by significant demand for satellites across various applications, including military surveillance, communications, navigation, and Earth observation. The presence of leading companies and continuous technological advancement has established North America as a center for space innovation and research. The region's emphasis on developing advanced AOCS technologies, coupled with substantial investment in research and development, continues to drive market expansion. The strong presence of both civilian and military space programs, along with increasing commercial space activities, has created a diverse and dynamic market environment.

Satellite Attitude and Orbit Control System Market in Rest of World

The Rest of World region, encompassing countries in the Middle East, Africa, and Latin America, is experiencing significant development in the satellite attitude and orbit control system market. The United Arab Emirates has emerged as a key player, making substantial investments in space technology and satellite development programs. Saudi Arabia's space sector is witnessing growth through initiatives led by the King Abdulaziz City for Science and Technology. The Iranian Space Agency's focus on developing indigenous space technology capabilities has contributed to regional market expansion. Brazil's space program, led by the Brazilian Space Agency, has been particularly active in satellite development, especially for environmental monitoring applications such as Amazon rainforest observation. These emerging markets are characterized by increasing government support, growing private sector participation, and rising demand for satellite-based services. The development of local expertise and infrastructure in these regions is gradually reducing their dependence on traditional space-faring nations while creating new opportunities for market growth and technological advancement.

Satellite Attitude and Orbit Control System Industry Overview

Top Companies in Satellite Attitude and Orbit Control System Market

The satellite attitude and orbit control system market is characterized by continuous product innovation focused on developing advanced components and miniaturized solutions for various satellite platforms. Companies are investing heavily in research and development to create more precise and efficient satellite control systems, particularly for small satellites and CubeSats. Strategic partnerships and collaborations with space agencies, research institutions, and commercial satellite manufacturers have become crucial for market expansion. Operational agility is demonstrated through the ability to customize solutions for different satellite masses and orbit classes while maintaining high reliability standards. Companies are also expanding their geographical presence through regional offices and distribution networks, particularly in emerging space markets across Asia-Pacific and Europe. The industry shows a strong focus on developing integrated solutions that combine multiple control components, including star trackers, reaction wheels, and magnetometers, to provide comprehensive attitude and orbit control capabilities.

Market Dominated by Specialized Technology Leaders

The satellite AOCS market exhibits a highly consolidated structure with a mix of specialized space technology companies and large aerospace conglomerates. The market is dominated by established players like OHB SE, Sitael S.p.A, and Jena-Optronik, who have built strong reputations through decades of experience in space technology. These companies maintain their market positions through extensive intellectual property portfolios, established relationships with space agencies, and proven track records in mission-critical applications. The competitive landscape is characterized by high entry barriers due to the complex technical requirements, stringent quality standards, and lengthy qualification processes required for space-grade components.


The market shows limited merger and acquisition activity, with companies preferring strategic partnerships and joint ventures to expand their capabilities and market reach. Regional players, particularly in Europe and North America, have established strong domestic market positions through close relationships with their respective space agencies and defense establishments. The industry structure favors companies with comprehensive product portfolios that can provide end-to-end solutions for various satellite platforms, from small CubeSats to large geostationary satellites.

Innovation and Integration Drive Future Success

For incumbent companies to maintain and increase their market share, focus must be placed on developing next-generation AOCS technologies that address the growing demand for smaller, more efficient, and cost-effective solutions. Success factors include investing in advanced manufacturing capabilities, strengthening supply chain relationships, and expanding service offerings to include post-launch support and maintenance. Companies need to demonstrate expertise in emerging technologies such as autonomous spacecraft control systems, artificial intelligence-based optimization, and advanced sensor integration to stay competitive. Building strong relationships with emerging commercial space companies and maintaining certifications from major space agencies will remain crucial for long-term success.


Contending companies can gain ground by focusing on specialized market segments, particularly in the rapidly growing small satellite sector. Developing innovative solutions for specific applications or orbit classes can help establish market presence. Success will depend on building credibility through successful demonstrations, obtaining necessary certifications, and establishing strategic partnerships with established players. Companies must also consider potential regulatory changes affecting space activities and prepare for increased scrutiny of space debris mitigation capabilities. The ability to offer competitive pricing while maintaining high reliability standards will be crucial for market penetration, particularly in emerging space markets.

Satellite Attitude and Orbit Control System Market Leaders

  1. Bradford Engineering BV

  2. Jena-Optronik

  3. OHB SE

  4. SENER Group

  5. Sitael S.p.A.

  6. *Disclaimer: Major Players sorted in no particular order
Satellite Attitude and Orbit Control System Market Concentration
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Satellite Attitude and Orbit Control System Market News

  • February 2023: Jena-Optronik announced that it has been selected by satellite constellation manufacturer Airbus OneWeb Satellites to provide the ASTRO CL a Attitude and Orbit Control Systems (AOCS) sensor for the ARROW family of small satellites.
  • December 2022: ASTRO CL, the smallest member of Jena-Optronik’s ASTRO star tracker family, has been chosen to support the new proliferated LEO satellite platform at Maxar. Each satellite will carry two ASTRO CL star trackers to enable its guidance, navigation and control.
  • November 2022: NASA's mission Artemis I was equipped with two star sensors from Jena-Optronik GmbH, which will ensure the precise alignment of the spaceship on its way to the Moon.

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Satellite Attitude and Orbit Control System Market
Satellite Attitude and Orbit Control System Market
Satellite Attitude and Orbit Control System Market
Satellite Attitude and Orbit Control System Market

Satellite Attitude and Orbit Control System Market Report - Table of Contents

1. EXECUTIVE SUMMARY & KEY FINDINGS

2. REPORT OFFERS

3. INTRODUCTION

  • 3.1 Study Assumptions & Market Definition
  • 3.2 Scope of the Study​
  • 3.3 Research Methodology

4. KEY INDUSTRY TRENDS

  • 4.1 Satellite Miniaturization
  • 4.2 Satellite Mass
  • 4.3 Spending On Space Programs
  • 4.4 Regulatory Framework
    • 4.4.1 Global
    • 4.4.2 Australia
    • 4.4.3 Brazil
    • 4.4.4 Canada
    • 4.4.5 China
    • 4.4.6 France
    • 4.4.7 Germany
    • 4.4.8 India
    • 4.4.9 Iran
    • 4.4.10 Japan
    • 4.4.11 New Zealand
    • 4.4.12 Russia
    • 4.4.13 Singapore
    • 4.4.14 South Korea
    • 4.4.15 United Arab Emirates
    • 4.4.16 United Kingdom
    • 4.4.17 United States
  • 4.5 Value Chain & Distribution Channel Analysis

5. MARKET SEGMENTATION (includes market size in Value in USD, Forecasts up to 2030 and analysis of growth prospects)

  • 5.1 Application
    • 5.1.1 Communication
    • 5.1.2 Earth Observation
    • 5.1.3 Navigation
    • 5.1.4 Space Observation
    • 5.1.5 Others
  • 5.2 Satellite Mass
    • 5.2.1 10-100kg
    • 5.2.2 100-500kg
    • 5.2.3 500-1000kg
    • 5.2.4 Below 10 Kg
    • 5.2.5 above 1000kg
  • 5.3 Orbit Class
    • 5.3.1 GEO
    • 5.3.2 LEO
    • 5.3.3 MEO
  • 5.4 End User
    • 5.4.1 Commercial
    • 5.4.2 Military & Government
    • 5.4.3 Other
  • 5.5 Region
    • 5.5.1 Asia-Pacific
    • 5.5.2 Europe
    • 5.5.3 North America
    • 5.5.4 Rest of World

6. COMPETITIVE LANDSCAPE

  • 6.1 Key Strategic Moves
  • 6.2 Market Share Analysis
  • 6.3 Company Landscape
  • 6.4 Company Profiles (includes Global Level Overview, Market Level Overview, Core Business Segments, Financials, Headcount, Key Information, Market Rank, Market Share, Products and Services, and Analysis of Recent Developments).
    • 6.4.1 AAC Clyde Space
    • 6.4.2 Bradford Engineering BV
    • 6.4.3 Innovative Solutions in Space BV
    • 6.4.4 Jena-Optronik
    • 6.4.5 NewSpace Systems
    • 6.4.6 OHB SE
    • 6.4.7 SENER Group
    • 6.4.8 Sitael S.p.A.
    • 6.4.9 Thales

7. KEY STRATEGIC QUESTIONS FOR SATELLITE CEOS

8. APPENDIX

  • 8.1 Global Overview
    • 8.1.1 Overview
    • 8.1.2 Porter’s Five Forces Framework
    • 8.1.3 Global Value Chain Analysis
    • 8.1.4 Market Dynamics (DROs)
  • 8.2 Sources & References
  • 8.3 List of Tables & Figures
  • 8.4 Primary Insights
  • 8.5 Data Pack
  • 8.6 Glossary of Terms
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List of Tables & Figures

  1. Figure 1:  
  2. MINIATURE SATELLITES (BELOW 10KG), NUMBER OF LAUNCHES, GLOBAL, 2017 - 2022
  1. Figure 2:  
  2. SATELLITE MASS (ABOVE 10KG) BY REGION, NUMBER OF SATELLITES LAUNCHED, GLOBAL, 2017 - 2022
  1. Figure 3:  
  2. SPENDING ON SPACE PROGRAMS BY REGION, USD, GLOBAL, 2017 - 2022
  1. Figure 4:  
  2. GLOBAL SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, VALUE, USD, 2017 - 2029
  1. Figure 5:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY APPLICATION, USD, GLOBAL, 2017 - 2029
  1. Figure 6:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY APPLICATION, %, GLOBAL, 2017 VS 2023 VS 2029
  1. Figure 7:  
  2. VALUE OF COMMUNICATION MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 8:  
  2. VALUE OF EARTH OBSERVATION MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 9:  
  2. VALUE OF NAVIGATION MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 10:  
  2. VALUE OF SPACE OBSERVATION MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 11:  
  2. VALUE OF OTHERS MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 12:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY SATELLITE MASS, USD, GLOBAL, 2017 - 2029
  1. Figure 13:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY SATELLITE MASS, %, GLOBAL, 2017 VS 2023 VS 2029
  1. Figure 14:  
  2. VALUE OF 10-100KG MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 15:  
  2. VALUE OF 100-500KG MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 16:  
  2. VALUE OF 500-1000KG MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 17:  
  2. VALUE OF BELOW 10 KG MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 18:  
  2. VALUE OF ABOVE 1000KG MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 19:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY ORBIT CLASS, USD, GLOBAL, 2017 - 2029
  1. Figure 20:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY ORBIT CLASS, %, GLOBAL, 2017 VS 2023 VS 2029
  1. Figure 21:  
  2. VALUE OF GEO MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 22:  
  2. VALUE OF LEO MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 23:  
  2. VALUE OF MEO MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 24:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY END USER, USD, GLOBAL, 2017 - 2029
  1. Figure 25:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY END USER, %, GLOBAL, 2017 VS 2023 VS 2029
  1. Figure 26:  
  2. VALUE OF COMMERCIAL MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 27:  
  2. VALUE OF MILITARY & GOVERNMENT MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 28:  
  2. VALUE OF OTHER MARKET, USD, GLOBAL, 2017 - 2029
  1. Figure 29:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY REGION, USD, GLOBAL, 2017 - 2029
  1. Figure 30:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET BY REGION, %, GLOBAL, 2017 VS 2023 VS 2029
  1. Figure 31:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, USD, ASIA-PACIFIC, 2017 - 2029
  1. Figure 32:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET %, ASIA-PACIFIC, 2017 VS 2029
  1. Figure 33:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, USD, EUROPE, 2017 - 2029
  1. Figure 34:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET %, EUROPE, 2017 VS 2029
  1. Figure 35:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, USD, NORTH AMERICA, 2017 - 2029
  1. Figure 36:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET %, NORTH AMERICA, 2017 VS 2029
  1. Figure 37:  
  2. VALUE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, USD, REST OF WORLD, 2017 - 2029
  1. Figure 38:  
  2. VALUE SHARE OF SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET %, REST OF WORLD, 2017 VS 2029
  1. Figure 39:  
  2. NUMBER OF STRATEGIC MOVES OF MOST ACTIVE COMPANIES, GLOBAL SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, ALL, 2017 - 2029
  1. Figure 40:  
  2. TOTAL NUMBER OF STRATEGIC MOVES OF COMPANIES, GLOBAL SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, ALL, 2017 - 2029
  1. Figure 41:  
  2. MARKET SHARE OF GLOBAL SATELLITE ATTITUDE AND ORBIT CONTROL SYSTEM MARKET, %, ALL, 2023

Satellite Attitude and Orbit Control System Industry Segmentation

Communication, Earth Observation, Navigation, Space Observation, Others are covered as segments by Application. 10-100kg, 100-500kg, 500-1000kg, Below 10 Kg, above 1000kg are covered as segments by Satellite Mass. GEO, LEO, MEO are covered as segments by Orbit Class. Commercial, Military & Government are covered as segments by End User. Asia-Pacific, Europe, North America are covered as segments by Region.
Application Communication
Earth Observation
Navigation
Space Observation
Others
Satellite Mass 10-100kg
100-500kg
500-1000kg
Below 10 Kg
above 1000kg
Orbit Class GEO
LEO
MEO
End User Commercial
Military & Government
Other
Region Asia-Pacific
Europe
North America
Rest of World
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Market Definition

  • Application - Various applications or purposes of the satellites are classified into communication, earth observation, space observation, navigation, and others. The purposes listed are those self-reported by the satellite’s operator.
  • End User - The primary users or end users of the satellite is described as civil (academic, amateur), commercial, government (meteorological, scientific, etc.), military. Satellites can be multi-use, for both commercial and military applications.
  • Launch Vehicle MTOW - The launch vehicle MTOW (maximum take-off weight) means the maximum weight of the launch vehicle during take-off, including the weight of payload, equipment and fuel.
  • Orbit Class - The satellite orbits are divided into three broad classes namely GEO, LEO, and MEO. Satellites in elliptical orbits have apogees and perigees that differ significantly from each other and categorized satellite orbits with eccentricity 0.14 and higher as elliptical.
  • Propulsion tech - Under this segment, different types of satellite propulsion systems have been classified as electric, liquid-fuel and gas-based propulsion systems.
  • Satellite Mass - Under this segment, different types of satellite propulsion systems have been classified as electric, liquid-fuel and gas-based propulsion systems.
  • Satellite Subsystem - All the components and subsystems which includes propellants, buses, solar panels, other hardware of satellites are included under this segment.
Keyword Definition
Attitude Control The orientation of the satellite relative to the Earth and the sun.
INTELSAT The International Telecommunications Satellite Organization operates a network of satellites for international transmission.
Geostationary Earth Orbit (GEO) Geostationary satellites in Earth orbit 35,786 km (22,282 mi) above the equator in the same direction and at the same speed as the earth rotates on its axis, making them appear fixed in the sky.
Low Earth Orbit (LEO) Low Earth Orbit satellites orbit from 160-2000km above the earth, take approximately 1.5 hours for a full orbit and only cover a portion of the earth’s surface.
Medium Earth Orbit (MEO) MEO satellites are located above LEO and below GEO satellites and typically travel in an elliptical orbit over the North and South Pole or in an equatorial orbit.
Very Small Aperture Terminal (VSAT) Very Small Aperture Terminal is an antenna that is typically less than 3 meters in diameter
CubeSat CubeSat is a class of miniature satellites based on a form factor consisting of 10 cm cubes. CubeSats weigh no more than 2 kg per unit and typically use commercially available components for their construction and electronics. 
Small Satellite Launch Vehicles (SSLVs) Small Satellite Launch Vehicle (SSLV) is a three-stage Launch Vehicle configured with three Solid Propulsion Stages and a liquid propulsion-based Velocity Trimming Module (VTM) as a terminal stage
Space Mining Asteroid mining is the hypothesis of extracting material from asteroids and other asteroids, including near-Earth objects.
Nano Satellites Nanosatellites are loosely defined as any satellite weighing less than 10 kilograms.
Automatic Identification System (AIS) Automatic identification system (AIS) is an automatic tracking system used to identify and locate ships by exchanging electronic data with other nearby ships, AIS base stations, and satellites. Satellite AIS (S-AIS) is the term used to describe when a satellite is used to detect AIS signatures.
Reusable launch vehicles (RLVs) Reusable launch vehicle (RLV) means a launch vehicle that is designed to return to Earth substantially intact and therefore may be launched more than one time or that contains vehicle stages that may be recovered by a launch operator for future use in the operation of a substantially similar launch vehicle.
Apogee The point in an elliptical satellite orbit which is farthest from the surface of the earth. Geosynchronous satellites which maintain circular orbits around the earth are first launched into highly elliptical orbits with apogees of 22,237 miles.
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Mordor Intelligence follows a four-step methodology in all our reports.

  • Step-1: Identify Key Variables: In order to build a robust forecasting methodology, the variables and factors identified in Step-1 are tested against available historical market numbers. Through an iterative process, the variables required for market forecast are set and the model is built on the basis of these variables.
  • Step-2: Build a Market Model: Market-size estimations for the historical and forecast years have been provided in revenue and volume terms. For sales conversion to volume, the average selling price (ASP) is kept constant throughout the forecast period for each country, and inflation is not a part of the pricing.
  • Step-3: Validate and Finalize: In this important step, all market numbers, variables and analyst calls are validated through an extensive network of primary research experts from the market studied. The respondents are selected across levels and functions to generate a holistic picture of the market studied.
  • Step-4: Research Outputs: Syndicated Reports, Custom Consulting Assignments, Databases & Subscription Platforms.
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Satellite Attitude and Orbit Control System Market Research FAQs

How big is the Global Satellite Attitude and Orbit Control System Market?

The Global Satellite Attitude and Orbit Control System Market size is expected to reach USD 3.07 billion in 2025 and grow at a CAGR of 13.34% to reach USD 5.74 billion by 2030.

What is the current Global Satellite Attitude and Orbit Control System Market size?

In 2025, the Global Satellite Attitude and Orbit Control System Market size is expected to reach USD 3.07 billion.

Who are the key players in Global Satellite Attitude and Orbit Control System Market?

Bradford Engineering BV, Jena-Optronik, OHB SE, SENER Group and Sitael S.p.A. are the major companies operating in the Global Satellite Attitude and Orbit Control System Market.

Which segment has the biggest share in the Global Satellite Attitude and Orbit Control System Market?

In the Global Satellite Attitude and Orbit Control System Market, the LEO segment accounts for the largest share by orbit class.

Which region has the biggest share in the Global Satellite Attitude and Orbit Control System Market?

In 2025, North America accounts for the largest share by region in the Global Satellite Attitude and Orbit Control System Market.

What years does this Global Satellite Attitude and Orbit Control System Market cover, and what was the market size in 2025?

In 2025, the Global Satellite Attitude and Orbit Control System Market size was estimated at 3.07 billion. The report covers the Global Satellite Attitude and Orbit Control System Market historical market size for years: 2017, 2018, 2019, 2020, 2021, 2022, 2023 and 2024. The report also forecasts the Global Satellite Attitude and Orbit Control System Market size for years: 2025, 2026, 2027, 2028, 2029 and 2030.

Satellite Attitude and Orbit Control System Market Research

Mordor Intelligence delivers a comprehensive analysis of the satellite attitude and orbit control system market. We leverage extensive expertise in spacecraft control system research. Our detailed examination covers crucial components, including satellite reaction wheel technology, attitude control systems, and integrated orbit control mechanisms. The report provides in-depth insights into satellite control systems and their applications in modern space technology. We place particular emphasis on satellite attitude determination and satellite positioning system innovations. Available as an easy-to-download report PDF, our analysis encompasses both spacecraft attitude control methodologies and advanced satellite guidance system technologies.

The report offers stakeholders valuable insights into satellite attitude control developments. It examines how orbit control systems function within satellite communication frameworks. Our research thoroughly evaluates satellite control mechanisms, including attitude and orbit control system in satellite communication applications. The analysis covers emerging trends in satellite orientation control and spacecraft attitude determination, providing actionable intelligence for industry participants. Stakeholders gain a comprehensive understanding of satellite attitude dynamics and orbit control system implementations. This is supported by detailed technical specifications and market forecasts that help inform strategic decision-making in the space technology sector.