![]() |
市場調査レポート
商品コード
1780259
空中ポッドの世界市場、ポッドタイプ別、航空機タイプ別、搭載場所別、地域別、機会、予測、2018年~2032年Global Airborne Pods Market Assessment, By Pod Type, By Aircraft Type, By Mounting Location, By Region, Opportunities and Forecast, 2018-2032F |
||||||
カスタマイズ可能
|
空中ポッドの世界市場、ポッドタイプ別、航空機タイプ別、搭載場所別、地域別、機会、予測、2018年~2032年 |
出版日: 2025年07月31日
発行: Markets & Data
ページ情報: 英文 231 Pages
納期: 3~5営業日
|
世界の空中ポッド市場は、予測期間2025-2032年のCAGRが5.94%で、2024年の32億8,000万米ドルから2032年には51億9,000万米ドルに成長すると予測されています。空中ポッド市場は、防衛予算の拡大、情報・監視・偵察(ISR)への関心の高まり、センサーの小型化などを背景に急成長しています。これらのモジュール式システムにより、戦闘機、UAV、ヘリコプターの任務の柔軟性が向上し、照準、対抗措置、電子戦にまたがることが可能になります。軽量素材は、マルチセンサーの使用による効率向上と相まって、空力性能を向上させる。EO/IR、レーダー、そして一旦分離されたISRデータコレクターを装備したポッドは、ユーザーに適切でタイムリーなデータを収集する能力を提供し、それによって将来の作戦のための状況認識を向上させる。その結果、プラットフォームにポッドを統合する際には、異なる機体との互換性を考慮したエンジニアリングなど、統合に関する課題が引き続き存在します。無人システムの数は増加の一途をたどっており、軍の近代化に伴い、空中ポッドは将来の戦略的作戦において不可欠な役割を果たすと思われます。現在の市場の見方は、革新性、相互運用性、そして国内外での防衛や国土安全保障・保護などの任務要件に対応する能力の向上に対して非常に有利です。
例えば、2025年6月、ゼネラル・アトミクス・エアロノーティカル・システムズ社とサーブは、Sバンドレーダー照射範囲に最適化されたAEWポッドを統合したMQ-9Bドローン用の空中早期警戒(AEW)能力を開発しました。飛行テストは2026年に予定されており、このシステムはレガシー機よりも低コストで陸海空のプラットフォームから空と地表の脅威を探知するように設計されています。このコラボレーションは、AEWへのアクセスを世界的に拡大し、従来の有人レーダーフリートが不足している顧客に持続的な監視と状況認識を提供します。
すべてのセグメントは、対象となるすべての地域と国に提供されます。
上記の企業は市場シェアに応じて注文を保留するものではなく、調査作業中に入手可能な情報に応じて変更される可能性があります。
Global airborne pods market is projected to witness a CAGR of 5.94% during the forecast period 2025-2032, growing from USD 3.28 billion in 2024 to USD 5.19 billion in 2032. The airborne pods market is growing at a rapid pace, driven by expanding defense budgets, rising interest in intelligence, surveillance, and reconnaissance (ISR), and the miniaturization of sensors. These modular systems allow for increased mission flexibility for combat aircraft, UAVs, and helicopters, across targeting, countermeasures and electronic warfare. Lightweight materials, combined with improvements in efficiency through the use of multi-sensors, enhance aerodynamic performance. Pods fitted with EO/IR, radar, and, once separate, ISR data collectors provide the user with the ability to collect relevant and timely data, thereby increasing situational awareness for future operations. As a result, there are ongoing integration challenges when integrating the pod onto the platform, including engineering for compatibility with different airframes. The number of unmanned systems continues to grow, as the military modernizes, airborne pods will play an essential role in future strategic operations. The current view of the market is very favorable for innovation, interoperability, and improving capability to perform for mission requirements, domestically and internationally, with defense and in homeland security and protection.
For instance, in June 2025, General Atomics Aeronautical Systems Inc. and Saab developed an Airborne Early Warning (AEW) capability for the MQ-9B drone, integrating AEW pods optimized for S-band radar coverage. Flight tests are scheduled for 2026, with the system designed to detect air and surface threats from land or naval platforms at a lower cost than legacy aircraft. This collaboration expands AEW access globally, offering persistent surveillance and situational awareness to customers who lack traditional manned radar fleets.
Modernization of Combat Aircraft Drives Demand for Airborne Pods
The modernization of air combat aircraft is a strong driver for the number of airborne pods, which can enhance mission capabilities through new and advanced targeting, surveillance, and EO/IR, as well as electronic warfare systems. Defense forces are modernizing their fleets to counter emerging threats, and the modules of these airborne pods will allow for flexible integration of EO/IR sensors, radar, and communication technologies. These airborne pods offer a lightweight platform with multi-role functionality, enabling precision engagement, real-time intelligence gathering, and the deployment of visual and electronic countermeasures. With increasing investments in next-generation aircraft, airborne pods will play a key role in operational effectiveness, situational awareness, and strategic vantage points for defense agencies. This category is on the rise, reflecting an ethos of greater adaptability and high-performance systems, as well as the desire for contemporary systems to align with military doctrines and achieve interoperability with modern Western military forces, primarily NATO.
For instance, in April 2025, General Atomics unveiled a 25 kW-class airborne laser pod for the MQ-9B SkyGuardian, which was showcased at the Sea Air Space 2025 conference. Designed for Fleet Defense and counter-UAS missions, the pod features distributed gain laser technology, scalable up to 300 kW, with efficient cooling and a high-density battery system. This marks a significant step in integrating directed-energy weapons into unmanned platforms, offering a cost-effective and reusable defense against drone and missile threats.
Rising Surveillance Demands Fuel Adoption of Airborne Pods
The growing demand for surveillance and reconnaissance activity is driving the increased use of airborne pods across defense and security. Airborne pods are modular systems fitted with sensors, electro-optical/infrared (EO/IR) cameras, radar, and communications technology, providing real-time intelligence and situational awareness. As threats become more intricate and the need for border security and surveillance increases, airborne pods offer options for flexible use by UAVs, helicopters, and fixed-wing aircraft. Airborne pods enable the accomplishment of modern missions with lightweight designs and multi-role capabilities, spanning tactical ISR-type missions to disaster response operations. Given the increasing focus on national defense, data-driven activity, and threat monitoring, airborne pods are increasingly vital platforms in the operations of modern military forces and homeland security agencies globally.
For instance, in October 2024, Raytheon, an RTX company, secured a USD 192 million engineering and development contract from the U.S. Navy to upgrade its Next Generation Jammer Mid-Band (NGJ-MB) system into the Mid-Band Extended (NGJ-MBX) variant. This enhancement expands the pod's frequency range to counter emerging threats and improves operational effectiveness, with integration planned for EA-18G Growler aircraft.
Rising Adoption of Data Link Pods Boosts Aircraft Connectivity Solutions
Increasing deployment of aircraft data link pods is ushering in a new generation of connectivity solutions that enable secure, high-speed communication between airborne platforms and ground systems. Data link pods integrate legacy technologies such as ACARS and ATN, while also enabling real-time data exchange, flight tracking, and the transmission of operational information updates. By extending bandwidth consumption and multi-link capabilities, Datalink pods encompass situational awareness, fuel usage, and air traffic management among a variety of complex, reprioritized metrics. As fleets modernize while the demand for digital interoperability continues to grow, data link pods are becoming critical components in military and commercial aviation mission applications. Furthermore, the pods enable trajectory-based operations while supporting and enhancing seamless communications between controllers and pilots, demonstrating the relevance of emerging and future standards for next-generation aerospace systems.
For instance, in May 2024, Collins Aerospace completed flight testing of its MS-110 Multispectral Airborne Reconnaissance System, confirming its readiness for deployment on platforms such as the F-16 Fighting Falcon. The pod offers enhanced wide-area surveillance, multispectral imaging, and rapid data dissemination via high-bandwidth datalink, even in contested environments.
North America Dominates the Global Airborne Pods Market Share
North America is the leading region in the airborne pods market due to its extensive defense infrastructure and substantial military spending, as well as the presence of prominent aerospace OEMs and advanced technologies. In this region, advanced research and development capabilities can enhance airborne pod solutions, and wide acceptance of airborne ISR and targeting/countermeasure pods can be applied across combat and other fixed-wing aircraft, UAVs, and helicopters. Geopolitical tensions are escalating, which will also drive the acquisition and demand for multi-sensor integration, electronic warfare systems, intelligence, surveillance, and reconnaissance capabilities. During the forecast period, advancements in R&D technologies will continue to drive demand for airborne electronic warfare solutions. The United States plays a critical role in North America due to its extensive procurement and research and development initiatives, as well as its work in modular pod design innovation. This leads to North America's continued ARN and the priority it gives to operational readiness, technology, and mission adaptability.
For instance, in April 2023, Raytheon secured a USD 650 million contract to produce and deliver Next Generation Jammer Mid-Band (NGJ-MB) pods for the U.S. Navy and Royal Australian Air Force. These pods, designed for EA-18G Growler aircraft, replace the aging AN/ALQ-99 systems and offer enhanced jamming capabilities using active electronically scanned array (AESA) technology. The NGJ-MB enables simultaneous multi-target engagement, modular upgrades, and extended range operations, marking a significant leap in electronic warfare effectiveness.
Impact of U.S. Tariffs on Global Airborne Pods Market
U.S. tariffs are altering the global airborne pods sector by increasing costs for inputs sourced from outside the U.S. and disrupting established supply chains. These tariffs on materials such as aluminum, electronics, and composites have prompted manufacturers to reassess their material sourcing strategies and consider domestic production. Innovation is stagnant, and integration into defense platforms is complicated by price volatility and regulatory uncertainty. Prices for materials are under further pressure as their average delivery times are increasing, and negotiations with international partners are in flux. While the sector is adapting to this change, it is doing so through strategies of diversification, regional manufacturing, and a renewed focus on supply chain resilience.
Key Players Landscape and Outlook
The airborne pods market is characterized by rapid growth in modular sensor systems, electronic warfare technology, and multi-domain operational capabilities. Key players in the industry are developing airborne pods that enhance surveillance, targeting, communications, and countermeasure capabilities for various air platforms. They are focusing on modularity, weight reduction, and compatibility to enable multiple mission formats across platforms. In addition to the trend toward realizing agile solutions for operational environments, there is an increase in types of modernizing defense shift priorities that can focus on interoperability, AI capabilities, and scalable systems. What happens next will depend on producing agile offerings that meet rapidly changing mission conditions while satisfying responsiveness, system reliability, and strategic flexibility across defense international operations.
For instance, in March 2024, Lockheed Martin Corporation successfully flight-tested its Multi-Function Electronic Warfare-Air Large (MFEW-AL) pod aboard a crewed MC-12W Liberty aircraft, demonstrating platform-agnostic adaptability. Built on the C5ISR/EW Modular Open Suite of Standards, the system is designed to detect, disrupt, and degrade enemy communications and radar across multi-domain operations.
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.