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市场调查报告书
商品编码
1964058
作战系统整合市场-全球产业规模、份额、趋势、机会、预测:按应用、平台、区域和竞争格局划分,2021-2031年Combat System Integration Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Application, By Platform, By Region & Competition, 2021-2031F |
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全球作战系统整合市场预计将从 2025 年的 257.1 亿美元成长到 2031 年的 462.7 亿美元,复合年增长率达 10.29%。
该市场专注于将各种武器、感测器、通讯网路以及指挥控制模组整合到一个统一的军事平台作战框架中。推动这一成长的关键因素包括盟军间互通性对于有效执行联合任务的重要性日益凸显,以及利用网路中心战能力对老旧舰队进行现代化改造的战略需求。此外,日益紧张的地缘政治局势也促使市场对能够支援快速决策和精确消除威胁的整合系统的需求不断增长。
| 市场概览 | |
|---|---|
| 预测期 | 2027-2031 |
| 市场规模:2025年 | 257.1亿美元 |
| 市场规模:2031年 | 462.7亿美元 |
| 复合年增长率:2026-2031年 | 10.29% |
| 成长最快的细分市场 | 战斗机 |
| 最大的市场 | 北美洲 |
然而,市场扩张的一大障碍在于,将传统模拟平台维修为相容的现代开放式架构标准,其技术复杂性和庞大的财务成本不容忽视。这些整合障碍往往导致计划延期和预算严重超支,从而使采购流程更加复杂。航太工业协会2025年的一份报告显示,该行业规模巨大,报告指出,“2024年,美国航太和国防工业的总产值超过9950亿美元。”
在地缘政治局势高度不稳定的背景下,不断增长的国防预算和对军事现代化投入的资金正在从根本上改变全球一体化作战系统市场格局。各国优先采购一体化作战系统,以维持应对实力相近对手的战备状态,以互联互通的系统取代孤立过时的平台,并投资建置适用于多域联合行动的基础设施。北约在2024年2月部长级会议前新闻发布会上宣布的计画清晰地反映了这一趋势。该声明预计,欧洲盟国将在2024年全年国防开支总合达到3,800亿美元,首次实现国防开支占GDP 2%的目标,并强调了透过高度整合来弥合安全差距的紧迫性。
同时,人工智慧(AI)和机器学习(ML)的快速发展和融合,正成为作战系统处理大量感测器资料并实现即时决策的关键技术基础。随着战争向以数据为中心的格局演变,负责人正将人工智慧演算法融入指挥控制架构,以支援自主威胁侦测和快速反应。根据美国国防部于2024年3月发布的2025财年预算申请,18亿美元被专门用于加速在联合部队中订单人工智慧能力。这项需求对产业活动产生了显着影响,泰雷兹集团2024年第一季国防与安全订单的自然成长127%便印证了这一点,这主要得益于一份关于整合空中监视和作战平台的大型合约。
市场扩张主要受制于维修老旧模拟平台以满足现代开放式架构标准所需的高昂成本和技术复杂性。将先进的数位作战系统整合到老旧硬体中需要进行大规模的重新设计,这不可避免地会导致成本增加和开发週期延长。这些整合挑战常常迫使国防部推迟关键的现代化专案或缩减升级目标以控制预算,从而导致统一作战架构的采用延迟,并限制了系统整合商的商机。
这种营运摩擦在近期产业对履行国防合约所面临挑战的评估中也显而易见。根据美国国防工业协会2025年的调查,「64%的私部门受访者认为,复杂冗长的采购流程是国防工业基础面临的最紧迫挑战。」这一数据凸显了复杂的整合要求以及随之而来的官僚主义延误如何阻碍市场发展。这些障碍使采购流程复杂化,阻碍了必要互通性的快速部署,从而限制了全球作战系统整合市场的整体成长轨迹。
全球作战系统整合市场的一大趋势是模组化开放系统方法 (MOSA) 的采用。这种方法从根本上改变了筹资策略,摆脱了厂商特定的架构。该调查方法要求使用标准化、非专有的介面和资料标准,例如 SOSA 和 FACE,从而使国防部门能够快速采用新技术,并确保跨平台的互通性。透过将硬体和软体分离,MOSA 能够实现持续的增量升级,从而显着降低以往困扰复杂国防专案的生命週期成本和整合时间。洛克希德马丁公司在 2025 年 12 月的新闻稿中宣布的大规模中标合约凸显了这一转变的重要性。该公司已获得一份价值超过 10 亿美元的合同,用于扩展其「扩散型作战人员空间架构」。该架构是一个基于开放标准的项目,旨在确保联合部队之间的无缝连接。
同时,有人-无人协同作战(MUM-T)的引入正在推动自主「忠诚僚机」无人机与有人作战平台的融合,重塑作战理念。这一趋势需要先进的作战管理系统,将无人资产的控制与有人驾驶飞机的情境察觉相结合,从而在不危及人员安全的前提下,有效扩展感测器探测范围和武器载荷。随着一体化作战人员不断开发这些先进的协同作战能力,与自主系统需求相关的市场活动也显着加速。埃尔比特系统公司(Elbit Systems)便是这一成长的例证。该公司在2025年3月公布的2024年第四季及全年业绩中,实现了68亿美元的年收入。这项业绩主要得益于航太部门业务收入成长9%,而这又源自于无人驾驶航空器系统(UAS)及相关协同作战技术需求的增加。
The Global Combat System Integration Market is projected to experience significant growth, expanding from USD 25.71 Billion in 2025 to USD 46.27 Billion by 2031, reflecting a CAGR of 10.29%. This market involves the technological convergence of various weaponry, sensors, communication networks, and command and control modules into a unified operational framework for military platforms. The primary drivers behind this growth include the critical need for interoperability among allied forces to conduct joint missions effectively and the strategic necessity of modernizing aging fleets with network-centric warfare capabilities. Additionally, rising geopolitical tensions are heightening the demand for integrated systems that support rapid decision-making and accurate threat neutralization.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 25.71 Billion |
| Market Size 2031 | USD 46.27 Billion |
| CAGR 2026-2031 | 10.29% |
| Fastest Growing Segment | Fighter Aircraft |
| Largest Market | North America |
However, a major obstacle impeding market expansion is the technical complexity and substantial financial cost involved in retrofitting legacy analog platforms to compatible modern open-architecture standards. These integration barriers frequently lead to prolonged project timelines and significant budget overruns, thereby complicating procurement cycles. The sector's massive economic scale is highlighted by the 'Aerospace Industries Association', which reported in '2025' that 'the United States aerospace and defense industry generated over $995 billion in total business activity during 2024'.
Market Driver
Increasing defense budgets and capital allocation for military modernization are fundamentally transforming the Global Combat System Integration Market, fueled by severe geopolitical instability. Nations are prioritizing the acquisition of integrated combat suites to maintain readiness against near-peer adversaries, directing funds toward replacing isolated legacy platforms with interconnected systems suitable for joint-domain operations. This surge is exemplified by NATO's announcement during the 'Pre-Ministerial Press Conference' in February 2024, which projected that European allies would invest a combined total of $380 billion in defense throughout 2024, achieving the 2% GDP spending target for the first time and underscoring the urgency of addressing security gaps through advanced integration.
Simultaneously, the rapid progression and incorporation of Artificial Intelligence (AI) and Machine Learning (ML) act as vital technological enablers, allowing combat systems to process immense amounts of sensor data for real-time decision-making. As warfare evolves to become more data-centric, integrators are embedding AI algorithms within command architectures to support autonomous threat detection and faster response times. According to the U.S. Department of Defense's 'Fiscal Year 2025 Budget Request' from March 2024, $1.8 billion was specifically allocated for artificial intelligence capabilities to accelerate their adoption across the joint force. This demand is driving significant industrial activity, as evidenced by Thales Group, which reported a 127% organic increase in order intake for its Defence & Security segment in the first quarter of 2024, attributed to major contracts for integrated air surveillance and combat platforms.
Market Challenge
The market's expansion is substantially hindered by the high financial costs and technical complexities required to retrofit legacy analog platforms for compatibility with modern open-architecture standards. Integrating advanced digital combat systems into aging hardware necessitates extensive re-engineering, which inevitably inflates expenses and prolongs development timelines. These integration challenges often compel defense departments to either delay essential modernization programs or scale back upgrade ambitions to stay within budget constraints, consequently slowing the adoption of unified combat architectures and limiting revenue opportunities for system integrators.
This operational friction is evident in recent industry evaluations concerning the challenges of fulfilling defense contracts. According to the 'National Defense Industrial Association' in '2025', '64 percent of private sector respondents identified complex and protracted procurement processes as the most pressing issue facing the defense industrial base'. This statistic underscores how the cycle of intricate integration requirements and subsequent bureaucratic delays impedes market momentum. By complicating the acquisition process, these barriers obstruct the rapid deployment of necessary interoperable capabilities, thereby restricting the overall growth trajectory of the Global Combat System Integration Market.
Market Trends
A pivotal trend within the Global Combat System Integration Market is the adoption of the Modular Open Systems Approach (MOSA), which fundamentally alters procurement strategies by moving away from proprietary, vendor-locked architectures. This methodology mandates the utilization of standardized, non-proprietary interfaces and data standards, such as SOSA and FACE, allowing defense departments to swiftly introduce new technologies and ensure interoperability across various platforms. By separating hardware from software, MOSA facilitates continuous incremental upgrades, thereby drastically lowering the lifecycle costs and integration times that have traditionally burdened complex defense programs. The importance of this shift is highlighted by major contract awards, such as the one announced by Lockheed Martin in a December 2025 'News Releases' update, where the company secured a contract exceeding $1 billion to expand the Proliferated Warfighter Space Architecture, a program built on open standards to guarantee seamless connectivity across the joint force.
In parallel, the implementation of Manned-Unmanned Teaming (MUM-T) is reshaping operational concepts by driving the integration of autonomous "loyal wingman" drones with manned combat platforms. This trend necessitates sophisticated combat management systems that can unify the control of unmanned assets with the situational awareness of piloted aircraft, effectively extending sensor range and weapons payload without jeopardizing personnel. As integrators develop these advanced teaming capabilities, the market is experiencing significant financial activity related to the demand for autonomous systems. This growth is illustrated by Elbit Systems, which reported in its 'Fourth Quarter and Full Year 2024 Results' from March 2025 that the company achieved annual revenues of $6.8 billion, a milestone largely driven by a 9% rise in aerospace sales resulting from increased demand for Unmanned Aerial Systems (UAS) and related teaming technologies.
Report Scope
In this report, the Global Combat System Integration Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Combat System Integration Market.
Global Combat System Integration Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: