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市場調査レポート
商品コード
1768677
宇宙ベース燃料管理システムの世界市場:軌道ステージ別、移送方法別、場所タイプ別、地域別、機会、予測、2018年~2032年Global Space-Based Fuel Management System Market Assessment, By Orbit Stage, By Transfer Method, By Location Type, By Region, Opportunities and Forecast, 2018-2032F |
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宇宙ベース燃料管理システムの世界市場:軌道ステージ別、移送方法別、場所タイプ別、地域別、機会、予測、2018年~2032年 |
出版日: 2025年07月11日
発行: Markets & Data
ページ情報: 英文 230 Pages
納期: 3~5営業日
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宇宙ベース燃料管理システムの世界市場は、2025~2032年の予測期間中にCAGR 6.34%を記録し、2024年の74億5,000万米ドルから2032年には121億8,000万米ドルに成長すると予測されています。宇宙ベース燃料管理システムの世界市場は、衛星配備の増加と低地球軌道衛星コンステレーションの増加により力強く成長しています。衛星ベースの通信とナビゲーション、地球観測サービスに対するニーズの高まりが、より優れた燃料追跡・最適化システムへと市場を牽引しています。
持続可能な運用を可能にする一方で、ロボット工学や自動化とともに人工知能の統合を含む技術進歩により、システム能力は向上します。この市場は、政府からの資金提供の増加や、新しい民間宇宙開発企業の開発により、さらなる支援を受けています。研究は、再利用可能な技術や宇宙空間での燃料補給機能とともに、先進的な推進システムを構築することに重点を置き、衛星や深宇宙探査機、打上げ輸送機のミッション期間を延長し、運用性能を向上させます。
例えば、2025年4月、国際宇宙ステーションは、Honda R&D Co., Ltd.、Sierra Space、Tec-Masters, Inc.によるテストのための再生燃料電池システムを受け入れ、将来の宇宙・月探査や宇宙ベース燃料管理システムに役立つ持続可能なクローズドループエネルギーソリューションを前進させました。
Global space-based fuel management system market is projected to witness a CAGR of 6.34% during the forecast period 2025-2032, growing from USD 7.45 billion in 2024 to USD 12.18 billion in 2032. The global market for space-based fuel management systems grows strongly due to rising satellite deployments and growing Low Earth Orbit satellite constellations. The growing need for satellite-based communication and navigation, and earth observation services, drives the market toward better fuel tracking and optimization systems.
System capabilities improve through technological progress, including artificial intelligence integration alongside robotics and automation, while enabling sustainable operational practices. The market receives additional support due to rising government funding and the development of new private space exploration firms. Research focuses on creating advanced propulsion systems alongside reusable technologies and in-space refueling capabilities to extend mission duration and increase operational performance for satellites and deep space and launch vehicles.
For instance, in April 2025, the International Space Station hosted a regenerative fuel cell system for testing by Honda R&D Co., Ltd., Sierra Space, and Tec-Masters, Inc. to advance sustainable closed-loop energy solutions, which benefit future space and lunar exploration and space-based fuel management systems.
Technological Advancement Pumps Space-Based Fuel Management System Market
Advances in space refueling management systems help drive the transition of space-based fuel management systems through the substantial increase of satellite constellations and improved electric and reusable propulsion systems. The combination of AI with automation provides real-time satellite monitoring and predictive maintenance capabilities and adaptive control functions, which result in improved mission performance along with increased reliability. The market growth receives an impetus through the advancement of on-orbit satellite refueling services and sophisticated monitoring and optimization systems. The industry now explores robotics together with blockchain technologies to enhance fueling operations and protect supply chains due to its movement toward autonomous space operations with sustainability goals.
For instance, in January 2025, new-generation satellites from China incorporate self-driving technology and orbital refueling systems to transform space surveying operations. The self-driving Siwei Gaojing-2 and Shijian-25 represent breakthroughs that extend satellite operating life and improve operational efficiency while driving forward advanced space-based fuel management technology.
Increasing Satellite Service Drives the Space-Based Fuel Management System Market Demand
Satellite service growth directly drives the expanding market for space-based fuel management systems. Operators encounter increasing difficulties with fuel management due to the increasing number of satellites in orbit for communication and navigation, and observation missions. The key role of fuel management is to extend satellite lifespans and deliver dependable performance while reducing operational expenses. The growing trend of satellite servicing, including in-orbit refueling and maintenance, establishes a requirement for advanced systems to back these operations. Space-based solution companies create modern technologies that support operators in optimizing their satellite constellations while meeting current space industry requirements. Current market growth trends point toward substantial development.
For instance, in November 2024, the United States Navy unveiled a first-of-its-kind robotic system for repairing and upgrading satellites in space. This technology supports satellite servicing, directly supporting rising demand for space-based fuel management systems as satellite fleets expand and require more efficient maintenance and operations solutions.
Low Earth Orbit (LEO) Refueling Dominates Space-Based Fuel Management System Market Share
The space-based fuel management system market finds its primary driving force in low Earth orbit (LEO) refueling operations. The rise of extensive satellite constellations operating in LEO space has driven the need for effective fuel management systems that enhance satellite performance while cutting operational expenses and boosting mission duration. On-orbit refueling services, together with adaptable fuel management solutions, have gained increasing importance because they meet the specific needs of contemporary satellite fleets. Technological developments fulfill the increasing requirement for dependable autonomous fuel management systems that operate specifically in LEO conditions. The future development of the sector will be led by LEO-based fuel management with refueling systems that promote sustainability and operational flexibility because commercial and government space activities continue to expand.
For instance, in January 2025, Astroscale Holdings Inc. obtained a Japanese contract to develop technology that enables refueling operations in space. The initiative establishes Astroscale's position as the leader of on-orbit servicing and matches the growing need for Low Earth Orbit (LEO) fuel management systems that support sustainable satellite operations.
North America Dominates the Global Space-Based Fuel Management System Market Size
The global space-based fuel management system market receives its highest market share from North America due to technological progress and strong infrastructure, and substantial space exploration funding. The region maintains its competitive advantage through its established spaceports and research institutions, along with innovation hubs, which receive further support from government initiatives and funding. Advanced fuel management solutions serve as essential components for maximizing satellite technology performance and extending space mission durations, which enables the region to lead in commercial spaceflight and deep space exploration activities. Public-private partnerships keep expanding the market while establishing standards for technological superiority, which shapes global fuel management system advancement.
For instance, in March 2025, Impulse Space, Inc. received selection by Orbit Fab, Inc. to provide geostationary orbit resupply services for hydrazine, which strengthens satellite operations. This strategic alliance demonstrates North American supremacy in space-based fuel management systems by advancing commercial orbital servicing capabilities.
Impact of U.S. Tariffs on Global Space-Based Fuel Management System Market
The implementation of tariffs on aerospace components and materials used in manufacturing fuel management systems cause cost increases in production. This results in higher prices for satellites, launch vehicles, and associated hardware for both U.S. and international customers.
The imposition of tariffs creates obstacles in worldwide supply networks because it raises costs while making it complicated to obtain electronics and sensors, and essential components. The outcome is project schedule delays and essential component shortages.
The U.S. business sector receives motivation to create homegrown solutions, along with establishing domestic production facilities to minimize its dependence on international suppliers. The process can trigger creative developments yet generate immediate higher operational expenses along with diminished system efficiency.
Trade restrictions, together with countermeasures from foreign nations, make it difficult for countries and businesses to establish cooperative projects because they want to safeguard their market interests. The resulting division of knowledge-sharing activities creates barriers to rapid technological growth within the sector.
Key Players Landscape and Outlook
The market for space-based fuel management systems experiences constant transformation due to rising satellite constellations and efficient propulsion requirements and expanding on-orbit servicing operations. The market growth receives support through advanced propulsion system technology alongside artificial intelligence and robotics implementation for fuel management and in-space refueling system development. The sector demonstrates strong collaboration between public and private entities, which focuses on mission duration extension along with sustainable practices and space debris reduction approaches. The market holds two crucial regions at the forefront because they possess strong infrastructure and research capabilities. The market maintains a positive trajectory because continuous innovation, along with growing space exploration investments, will drive further development.
For instance, in December 2024, Blue Origin, LLC acquired the right to use Nimbus Power Systems, Inc.'s fuel cell technology to develop space power systems. The gravity-independent water management system of Nimbus enables effective fuel cell operation in space, which provides essential fuel management for extended space journeys.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.