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市場調查報告書
商品編碼
1963857
軍用非控制天線市場-全球產業規模、佔有率、趨勢、機會、預測:按平台、產品、應用、地區和競爭格局分類,2021-2031年Military Non-Steerable Antenna Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Platform, By Product, By Application, By Region & Competition, 2021-2031F |
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全球軍用非定向天線市場預計將從 2025 年的 5.9912 億美元成長到 2031 年的 9.0976 億美元,複合年成長率為 7.21%。
該市場的目標客戶是那些缺乏動態波束成形能力且輻射模式固定的通訊系統,例如全向或扇區覆蓋。推動這一市場成長的主要因素是對耐用、低維護硬體的持續需求,這些硬體能夠承受嚴苛的戰術環境,因為機械運動部件會帶來風險。此外,老舊地面車輛和攜帶式無線電設備的廣泛使用,也使得對經濟高效的連接解決方案的需求持續成長,這些解決方案能夠避免定向陣列系統常見的整合複雜性。
| 市場概覽 | |
|---|---|
| 預測期 | 2027-2031 |
| 市場規模:2025年 | 5.9912億美元 |
| 市場規模:2031年 | 9.0976億美元 |
| 複合年成長率:2026-2031年 | 7.21% |
| 成長最快的細分市場 | 機載型 |
| 最大的市場 | 亞太地區 |
儘管固定模式天線效用,但由於其易受電子戰攻擊,市場擴張面臨巨大障礙。與低機率偵測的定向天線相比,持續的訊號傳輸使得敵方更容易定位和干擾定向。然而,在全球國防領域大規模資本投資的支持下,採購活動依然強勁。根據斯德哥爾摩國際和平研究所的數據,預計到2024年,全球軍費開支將成長9.4%,達到2.7兆美元。這確保了為這些關鍵通訊資產的採購和現代化提供充足的預算支援。
戰術通訊網路的現代化正在催生對非定向天線的巨大需求,尤其是在支援攜帶式和車載軟體定義無線電(SDR)方面。與定向天線不同,這些固定模式天線可提供關鍵的全向覆蓋,使地面移動部隊能夠在無需動態硬體調整的情況下保持持續的移動專案網路(MANET)連接。這種能力對於單兵攜帶系統至關重要,因為在這些系統中,減輕重量、確保穩健性和保持操作便利性是現代化的關鍵。埃爾比特系統公司2024年12月發布的新聞稿「以色列國防部採購先進通訊系統」便反映了這一採購趨勢。該公司獲得了一份價值約1.3億美元的契約,將為以色列國防部交付數千套依賴這些耐環境天線組件的SDR和數據鏈路。
無人機和地面系統的日益普及進一步加速了市場趨勢。這是因為中小型自主平台依賴輕型線狀或刀片狀天線進行指揮控制遙測。這些非定向解決方案能夠最大限度地降低空氣阻力和功耗,這對於集群部署的無人機執行監視和長航時武器任務至關重要。根據2024年3月《防務新聞》一篇題為「五角大廈計畫為『複製者』計畫前兩年撥款10億美元」的報導,美國國防部在其2025會計年度預算中申請了5億美元,用於支持「複製者」項目,旨在部署數千台自主單元。平台採購的激增得益於更廣泛的財政成長。國際戰略研究所(IISS)在2025年2月發布的報告顯示,2024年全球國防費用達到2.46兆美元,確保了這些零件採購的持續資金。
全球軍用非定向天線市場成長面臨的主要障礙之一是其硬體在複雜電磁環境中固有的易受探測和干擾能力。與能夠動態調整輻射方向圖以保持隱蔽性的定向系統不同,非定向天線以靜態的固定方向輻射訊號。這種持續的無線電輻射特性使得敵方能夠透過三角定位輕鬆確定訊號源,並利用干擾等電子戰技術有效破壞通訊鏈路。由於低偵測機率在現代戰爭中至關重要,這些天線無法規避探測的特性成為其戰術弱點,通常限制了其在低威脅的後方支援任務中的應用,使其無法用於前線作戰。
全球電子戰活動的激增加劇了這種作戰脆弱性。根據國際航空運輸協會(IATA)2024年的報告,針對依賴固定模式接收的全球導航衛星系統(GNSS)的干擾率年增了175%,欺騙事件更是增加了500%。訊號干擾數量的激增使得國防採購機構在為下一代平台大量投資非定向解決方案方面猶豫不決。因此,儘管這些傳統組件具有成本優勢,但日益成長的訊號入侵風險正在顯著降低其在能夠對抗勢均力敵對對手的國防現代化項目中的需求。
隨著國防機構保護靜態通訊鏈路免受日益複雜的電子戰威脅,抗干擾和干擾抑制技術的整合正成為關鍵趨勢。與可透過可移動波束成形消除干擾的可移動陣列不同,固定模式天線傳統上缺乏這種固有的保護機制。這迫使製造商將先進的濾波和耐環境電子元件直接整合到硬體中。這項發展優先考慮在不改變天線物理尺寸或增加複雜機械控制的情況下,保持導航和指揮系統的訊號完整性。為了凸顯這種向容錯方向的轉變,MTI Wireless Edge 在 2025 年 8 月的新聞稿《新契約》中宣布,該公司已獲得向國際國防客戶訂單抗干擾 GPS 和機載通訊天線的訂單,這表明市場對抗干擾組件的需求日益成長。
同時,5G和高頻衛星通訊的部署正在重塑產品開發,以滿足現代以網路為中心的戰術對巨大頻寬的需求。軍方用戶現在需要能夠在頻寬內運行的非定向解決方案,從而為使用高速衛星和蜂巢式網路的車輛和步兵提供無縫連接。這種轉變要求天線能夠支援更高頻率的波形,同時保持移動作戰所需的耐用性和全向覆蓋範圍。這項現代化工作的規模體現在預算撥款上。報導的《太空部隊預計商業衛星通訊需求將大幅成長》,美國太空部隊在其2025會計年度預算申請中為衛星通訊累計44億美元。這是一項重大投資,旨在推動下游對相容地面終端和容錯天線介面的需求。
The Global Military Non-Steerable Antenna Market is projected to expand from USD 599.12 Million in 2025 to USD 909.76 Million by 2031, reflecting a Compound Annual Growth Rate (CAGR) of 7.21%. This market encompasses communication systems with fixed radiation patterns, such as omnidirectional or sector-specific coverage, which operate without dynamic beamforming capabilities. The primary impetus for this growth is the sustained need for durable, low-maintenance hardware that can survive in severe tactical settings where mechanical moving parts pose a risk. Additionally, the widespread use of legacy ground vehicles and man-portable radios creates a continuous demand for cost-efficient connectivity solutions that avoid the integration complexities typical of steerable array systems.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 599.12 MIllion |
| Market Size 2031 | USD 909.76 MIllion |
| CAGR 2026-2031 | 7.21% |
| Fastest Growing Segment | Airborne |
| Largest Market | Asia Pacific |
Despite their utility, market expansion faces a significant hurdle due to the susceptibility of fixed-pattern antennas to electronic warfare; their continuous signal emissions make them easier for adversaries to locate and jam compared to low-probability-of-intercept directional models. However, procurement activities remain robust, supported by extensive capitalization within global defense sectors. Data from the Stockholm International Peace Research Institute indicates that in 2024, worldwide military spending increased by 9.4 percent to $2.7 trillion, ensuring substantial budgetary backing for the acquisition and modernization of these critical communication assets.
Market Driver
The modernization of tactical communication networks creates a substantial requirement for non-steerable antennas, specifically to support handheld and vehicular software-defined radios (SDRs). Unlike directional alternatives, these fixed-pattern units deliver vital omnidirectional coverage, enabling mobile ground units to sustain continuous Mobile Ad-Hoc Network (MANET) connections without the need for dynamic hardware alignment. This functionality is essential for soldier-mounted systems where minimizing weight, ensuring ruggedness, and maintaining operational simplicity are key to modernization goals. This procurement trend is exemplified by Elbit Systems, which announced in a December 2024 press release titled 'Israel MOD Procures Advanced Communication Systems' that it secured a contract worth approximately $130 million to deliver thousands of SDRs and data links dependent on these resilient antenna components.
The rising proliferation of unmanned aerial and ground systems further stimulates market momentum, as small-to-medium autonomous platforms depend on lightweight wire and blade antennas for command and control telemetry. These non-steerable solutions provide the minimal aerodynamic drag and low power consumption necessary for drones, which are increasingly deployed in swarms for surveillance and loitering munitions tasks. According to a March 2024 article in Defense News titled 'Pentagon says $1 billion planned for first two years of Replicator,' the U.S. Department of Defense requested $500 million in the Fiscal Year 2025 budget to support the Replicator initiative, aiming to field thousands of such autonomous units. This surge in platform acquisition is supported by broader financial growth; the International Institute for Strategic Studies reported in February 2025 that global defense spending hit $2.46 trillion in 2024, guaranteeing continued funding for these component acquisitions.
Market Challenge
A major obstacle impeding the growth of the Global Military Non-Steerable Antenna Market is the hardware's intrinsic vulnerability to detection and interference within contested electromagnetic environments. In contrast to steerable systems that can dynamically adjust radiation patterns to preserve stealth, non-steerable antennas emit signals in static, fixed directions. This continuous broadcast signature enables adversaries to easily triangulate the signal source and employ electronic countermeasures, such as jamming, to effectively sever communication links. Because modern warfare places a high priority on low-probability-of-intercept capabilities, the inability of these antennas to evade detection turns them into a tactical liability, often restricting their use to lower-threat, rear-echelon roles rather than frontline combat operations.
This operational weakness is intensified by a dramatic increase in global electronic warfare activities. According to the International Air Transport Association (IATA) report regarding 2024, interference rates affecting Global Navigation Satellite Systems (GNSS)-which rely on fixed-pattern reception-rose by 175 percent, while spoofing incidents increased by 500 percent over the previous year. Such a quantifiable surge in signal disruption deters defense procurement agencies from investing heavily in non-steerable solutions for next-generation platforms. Consequently, despite the cost advantages of these legacy components, the elevated risk of signal compromise significantly reduces demand within defense modernization programs capable of countering peer-level adversaries.
Market Trends
The integration of anti-jamming and interference mitigation technologies is emerging as a crucial trend as defense agencies aim to shield static communication links from increasingly advanced electronic warfare threats. While steerable arrays can neutralize jamming via dynamic beamforming, fixed-pattern antennas have historically lacked such inherent defenses, driving manufacturers to embed advanced filtering and hardened electronics directly into the hardware. This development prioritizes maintaining signal integrity for navigation and command systems without changing the antenna's physical size or adding complex mechanical steering. Highlighting this shift toward resilience, MTI Wireless Edge announced in an August 2025 press release titled '$1.6M in New Contracts for Advanced Defense Antennas' that it received orders to provide anti-jamming GPS and airborne communication antennas to international defense clients, signaling a growing preference for interference-resistant components.
Simultaneously, the expansion into 5G and high-frequency SATCOM support is reshaping product development to meet the substantial bandwidth demands of modern network-centric warfare. Military users now require non-steerable solutions that function across broader spectral bands, facilitating seamless connectivity for vehicles and dismounted soldiers utilizing high-speed satellite and cellular networks. This shift necessitates antennas capable of supporting higher frequency waveforms while maintaining the durability and omnidirectional coverage required for mobile operations. The magnitude of this modernization effort is reflected in budgetary commitments; as reported by Air & Space Forces Magazine in a January 2025 article titled 'Space Force Forecasts Big Boost in Commercial SATCOM,' the U.S. Space Force allocated $4.4 billion to satellite communications in its 2025 budget request, a significant investment that fuels downstream demand for compatible ground terminals and resilient antenna interfaces.
Report Scope
In this report, the Global Military Non-Steerable Antenna 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 Military Non-Steerable Antenna Market.
Global Military Non-Steerable Antenna 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: