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市場調査レポート
商品コード
1717724
軍用電気光学・赤外線システム市場:システムタイプ,コンポーネント,テクノロジー,波長,アプリケーション,プラットフォーム別-2025-2030年世界予測Military Electro-optical & Infrared System Market by System Type, Component, Technology, Wavelength, Application, Platform - Global Forecast 2025-2030 |
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カスタマイズ可能
適宜更新あり
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軍用電気光学・赤外線システム市場:システムタイプ,コンポーネント,テクノロジー,波長,アプリケーション,プラットフォーム別-2025-2030年世界予測 |
出版日: 2025年04月01日
発行: 360iResearch
ページ情報: 英文 198 Pages
納期: 即日から翌営業日
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軍用電気光学・赤外線システム市場は、2024年には142億2,000万米ドルとなり、2025年には153億2,000万米ドル、CAGR 8.23%で成長し、2030年には228億7,000万米ドルに達すると予測されています。
主な市場の統計 | |
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基準年 2024 | 142億2,000万米ドル |
推定年 2025 | 153億2,000万米ドル |
予測年 2030 | 228億7,000万米ドル |
CAGR(%) | 8.23% |
軍事情勢は技術的ルネッサンスの時代を迎えており、精密性、迅速性、多用途性が戦略的優位性を牽引しています。最新の電気光学および赤外線システムは、高度防衛の重要な柱として登場し、前例のない状況認識と情報能力を可能にしています。本レポートでは、最先端の設計と堅牢な統合が、どのように国家を作戦上の優位性確保へと駆り立てるかを掘り下げながら、これらのシステムにおける変革的進歩の探求に着手します。市場力学を包括的にとらえ、従来のイメージング技術から、イメージングと非イメージングの両パラダイムを組み合わせた高度なハイブリッド構成への進化を解説します。これらのシステムの固有の価値は、高解像度の画像を生成したり、イベント分析のために熱シグネチャを配置したりするなど、さまざまな条件下で動作する能力にあります。作戦地域が複雑化するにつれて、これらの機器はリアルタイムの監視、夜間作戦、秘密情報収集に不可欠なツールとなっています。このように進化する情勢において、研究と技術革新への継続的な投資は最も重要です。本書は、技術的ブレークスルーと洗練されたセグメンテーションの洞察を明確にするだけでなく、世界の防衛インフラを形成しているより広範な戦略的要請と結びつけています。イノベーションを核とするこの詳細な評価は、戦術的・戦略的軍事作戦の強化におけるこれらのシステムの貢献的役割を強調するものです。
軍用電気光学・赤外線システム市場の変革
近年、軍事領域において電気光学および赤外線技術の境界を再定義する画期的な変化が起きています。この転換は、急速な技術革新、人工知能の統合の進展、優れた作戦効率の達成に向けた絶え間ない努力によって強調されています。大きな変革の一つは、多様な環境条件下で驚異的な精度、高解像度、多次元追跡能力を提供するセンサー技術の進化です。革新的な製造技術の採用により、画像処理装置の性能が向上し、対抗措置や環境危険に対する耐性が強化されています。さらに、技術の収束により、複数の機能が単一のプラットフォームに統合され、画像撮影だけでなく、リアルタイムでのデータ処理や分析が可能になりました。これらの開発により、ダイナミックな作戦行動において、意思決定が迅速なデータ処理と不確実性の低減にますます依存するようになるというパラダイムシフトが起きています。研究開発への戦略的投資は、世界の防衛調達戦略の変化とともに、ハードウェアとソフトウェアの両方のコンポーネントの継続的な改良を促進する肥沃な環境に拍車をかけています。新たな動向は、技術的俊敏性、運用回復力、多機能能力が例外ではなく、通常の標準となる強固なエコシステムを浮き彫りにしています。
市場セグメンテーションの主な洞察が市場機会を解き放つ
市場セグメンテーションを深く掘り下げると、軍用電気光学および赤外線システムの戦略的意思決定の基礎を築く、複雑ながら洞察に満ちた構造が見えてくる。市場は、主にシステムタイプに基づいてイメージングシステムと非イメージングシステムに分けられ、それぞれに異なる属性と要件があります。イメージングシステムでは、電荷結合素子(CCD)カメラと相補型金属酸化膜半導体(CMOS)センサの評価に分析が及んでおり、それぞれが独自の性能メリットを提供しています。赤外線イメージングシステムは、長波長赤外線、中波長赤外線、短波長赤外線に詳細にセグメント化され、特殊な運用条件下で優れたソリューションを提供し、拡大を続けています。さらに、このセグメントの赤外線サーマルカメラは、より鮮明な熱シグネチャーと信頼性の向上を実現することで、センサー技術の進歩を体現しています。一方、非撮像システムは、光ファイバージャイロIMU、レーザー距離計、ライダーシステムなどのコンポーネントに焦点を当て、安定化と精密測定のニッチな要件に積極的に対応しています。コンポーネントに基づくセグメンテーション分析では、市場はさらにディスプレイ、レンズ、センサーに分類され、ディスプレイ・セグメントはLCDとOLEDタイプ、レンズ・セグメントは固定レンズと可変レンズ、センサー・セグメントは赤外線センサーと光学センサーに分類されます。技術的には、市場はレーザーシステム、マイクロオプティクス、ナイトビジョン、サーマルイメージングに分類され、これらは総称して技術革新のペースと広がりを示しています。さらに、波長細分化によって性能スペクトルを遠赤外線、近赤外線、紫外線、可視域に拡大。用途別セグメンテーションでは、通信、火器管制、情報収集、ナビゲーション、監視、目標捕捉などの多様な使用事例を調査し、それぞれが異種の需要に寄与しています。最後に、プラットフォーム・ベースのセグメンテーションでは、空中、地上、海上の各配備における利用を取り上げます。空中プラットフォームは戦闘機、ヘリコプター、無人航空機に、地上プラットフォームは装甲車と歩兵に、海上プラットフォームは潜水艦と水上艦に、それぞれさらに細分化されます。この複雑なセグメンテーションは、現在の市場構造を明らかにするだけでなく、特定の属性を新たな戦術的ニーズに合わせることで、将来の成長機会も浮き彫りにしています。
The Military Electro-optical & Infrared System Market was valued at USD 14.22 billion in 2024 and is projected to grow to USD 15.32 billion in 2025, with a CAGR of 8.23%, reaching USD 22.87 billion by 2030.
KEY MARKET STATISTICS | |
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Base Year [2024] | USD 14.22 billion |
Estimated Year [2025] | USD 15.32 billion |
Forecast Year [2030] | USD 22.87 billion |
CAGR (%) | 8.23% |
The military landscape is undergoing an era of technological renaissance, where precision, rapidity, and versatility drive strategic advantage. Modern electro-optical and infrared systems have emerged as a critical pillar in advanced defense, enabling unprecedented situational awareness and intelligence capabilities. This report embarks on an exploration of the transformative progress in these systems, delving into how cutting-edge design and robust integration propel nations to secure operational superiority. Through a comprehensive view of the market dynamics, the analysis explains the evolution from traditional imaging techniques to sophisticated hybrid configurations that combine both imaging and non-imaging paradigms. The inherent value of these systems lies in their ability to operate under various conditions, whether it is through generating high-resolution imagery or deploying thermal signatures for event analysis. As operational theaters grow more complex, these instruments have become indispensable tools for real-time monitoring, night operations, and covert intelligence gathering. In this evolving climate, continuous investment in research and innovation is paramount. The narrative herein not only articulates the technological breakthroughs and refined segmentation insights but also connects them with the broader strategic imperatives that are shaping the global defense infrastructure. With innovation at its core, this in-depth assessment underscores the contributory role of these systems in enhancing both tactical and strategic military operations.
Transformative Shifts in the Military Electro-optical & Infrared Landscape
Recent years have witnessed groundbreaking shifts in the military domain that have redefined the boundaries of electro-optical and infrared technologies. The shift is underscored by rapid innovation, increased integration of artificial intelligence, and a relentless drive to achieve superior operational efficiency. One major transformation is the evolution of sensor technologies that now offer extraordinary precision, higher resolution, and multidimensional tracking capabilities under diverse environmental conditions. The adoption of innovative manufacturing techniques has boosted the performance of imaging devices, providing reinforced resistance against countermeasures and environmental hazards. Furthermore, technological convergence has led to the integration of multiple functionalities within a single platform, enabling systems not only to capture imagery but also to process and analyze data in real time. These developments have contributed to a paradigm shift where decision-making is increasingly reliant on rapid data processing and uncertainty reduction in dynamic operational theatres. Strategic investments in research and development, along with a shift in defense procurement strategies worldwide, are fueling a fertile environment that promotes continued refinement of both hardware and software components. The emerging trends highlight a robust ecosystem where technological agility, operational resilience, and multifunctional capability become the normal standard rather than the exception.
Key Segmentation Insights Unlocking Market Opportunities
A deep dive into market segmentation reveals a complex yet insightful structure that lays the foundation for strategic decision-making in military electro-optical and infrared systems. The market is primarily divided based on system type into imaging and non-imaging systems, each with distinct attributes and requirements. Within imaging systems, the analysis extends to the evaluation of Charge-Coupled Device (CCD) cameras and Complementary Metal-Oxide-Semiconductor (CMOS) sensors, each offering unique performance benefits. Infrared imaging systems continue to expand with detailed segmentation into long-wave infrared, mid-wave infrared, and short-wave infrared, offering tailored solutions that excel under specialized operational conditions. Additionally, thermal imaging cameras within this segment embody the progression of sensor technology by delivering clearer heat signatures and improved reliability. On the other hand, non-imaging systems focus on components such as fiber optic gyro IMUs, laser rangefinders, and lidar systems, assertively addressing niche requirements for stabilization and precision measurement. The segmentation analysis based on component further dissects the market into displays, lenses, and sensors, while the display segment differentiates between LCD and OLED types, the lens segment navigates between fixed and variable-interest lenses, and the sensor segment contemplates both infrared and optical sensors. Technologically, the market is categorized into laser systems, microoptics, night vision, and thermal imaging, which collectively denote the pace and breadth of innovations. Furthermore, the spectrum of performance is expanded through wavelength segmentation into far-infrared, near-infrared, ultraviolet, and visible ranges. Application-specific segmentation explores the diverse use cases such as communications, fire control, intelligence gathering, navigation, surveillance, and target acquisition, each contributing to the heterogeneous demand. Finally, the platform-based segmentation addresses the utilization across aerial, ground, and maritime deployments - with aerial platforms further segmented into fighter jets, helicopters, and unmanned aerial vehicles, ground platforms detailed by armored vehicles and infantry, and maritime platforms split between submarines and surface ships. This intricate segmentation not only reveals current market structures but also highlights future growth opportunities by aligning specific attributes with emerging tactical needs.
Based on System Type, market is studied across Imaging Systems and Non-Imaging Systems. The Imaging Systems is further studied across Charge-Coupled Device (CCD) Cameras, Complementary Metal-Oxide-Semiconductor (CMOS) Sensors, Infrared Imaging Systems, and Thermal Imaging Cameras. The Infrared Imaging Systems is further studied across Long-Wave Infrared (LWIR), Mid-Wave Infrared (MWIR), and Short-Wave Infrared (SWIR). The Non-Imaging Systems is further studied across Fiber Optic Gyro IMUs, Laser Rangefinders, and Lidar Systems.
Based on Component, market is studied across Displays, Lenses, and Sensors. The Displays is further studied across LCD Displays and OLED Displays. The Lenses is further studied across Fixed Lenses and Variable-Interest Lenses. The Sensors is further studied across Infrared Sensors and Optical Sensors.
Based on Technology, market is studied across Laser Systems, Microoptics, Night Vision, and Thermal Imaging.
Based on Wavelength, market is studied across Far-Infrared, Near-Infrared, Ultraviolet, and Visible.
Based on Application, market is studied across Communications, Fire Control, Intelligence Gathering, Navigation, Surveillance, and Target Acquisition.
Based on Platform, market is studied across Aerial Platforms, Ground Platforms, and Maritime Platforms. The Aerial Platforms is further studied across Fighter Jets, Helicopters, and Unmanned Aerial Vehicles (UAVs). The Ground Platforms is further studied across Armored Vehicles and Infantry. The Maritime Platforms is further studied across Submarines and Surface Ships.
Key Regional Insights Shaping the Market Dynamics
The global market for military electro-optical and infrared systems is characterized by distinct regional dynamics that influence both demand and supply. In the Americas, the emphasis on modernization, combined with considerable investments in defense technology, underscores the region's push towards enhanced interoperability and state-of-the-art surveillance capabilities. Europe, Middle East, and Africa collectively present a diverse landscape; while Europe focuses on integrating legacy systems with next-generation innovations, the Middle East continues to invest heavily in systems that provide rapid response and strategic deterrence, and Africa is gradually building capacity to harness advanced defense technologies. Meanwhile, the Asia-Pacific region stands as a critical hub for technological innovation and industrial growth, driven by escalating geopolitical tensions and modernization initiatives across several nations. Each region's unique economic, political, and strategic imperatives is fueling tailored advancements in both research and deployment, thus ensuring that technological superiority remains a top priority in an ever-evolving security environment.
Based on Region, market is studied across Americas, Asia-Pacific, and Europe, Middle East & Africa. The Americas is further studied across Argentina, Brazil, Canada, Mexico, and United States. The United States is further studied across California, Florida, Illinois, New York, Ohio, Pennsylvania, and Texas. The Asia-Pacific is further studied across Australia, China, India, Indonesia, Japan, Malaysia, Philippines, Singapore, South Korea, Taiwan, Thailand, and Vietnam. The Europe, Middle East & Africa is further studied across Denmark, Egypt, Finland, France, Germany, Israel, Italy, Netherlands, Nigeria, Norway, Poland, Qatar, Russia, Saudi Arabia, South Africa, Spain, Sweden, Switzerland, Turkey, United Arab Emirates, and United Kingdom.
Key Companies Insights Driving Innovation and Growth
Industry leaders have been pivotal in spearheading the research, development, and deployment of cutting-edge military electro-optical and infrared systems. Prominent global organizations such as Airbus SAS and Amentum Services, Inc. are driving high-level innovation by synergizing advanced sensor technologies with complex systems integration. Companies like Anduril Industries, Inc. and Aselsan A.S. have impressed with their agile development cycles and adaptive solutions, while BAE Systems PLC together with Bharat Electronics Ltd. are leveraging deep technological expertise to offer robust and reliable solutions. CONTROP Precision Technologies Ltd. and Corning Incorporated are redefining the possibilities in precision optics and manufacturing, pushing the boundaries of what is achievable in extreme operational environments. Elbit Systems Ltd. and General Dynamics Corporation continue to focus on long-term innovation pipelines, as Hensoldt AG alongside HGH Infrared Systems by TTP PLC lead the charge in thermal and multi-spectral imaging solutions. IMSAR LLC, Israel Aerospace Industries Ltd., and Kollmorgen Corporation are recognized for their commitment to integrating advanced control systems and navigation technologies. Further, stalwarts such as L3Harris Technologies, Inc., Leonardo S.p.A., and Lockheed Martin Corporation have been instrumental in setting benchmarks for performance and reliability across multiple platforms. Northrop Grumman Corporation, Rafael Advanced Defense Systems Ltd., and Raytheon Technologies Corporation are charting new territories with futuristic designs, while Rheinmetall AG, Saab AB, Safran Group, Teledyne Technologies Incorporated, Thales Group, and The Boeing Company continue to deliver comprehensive solutions that cater to complex mission requirements. Their collective expertise not only enriches the market but also drives sustainable growth for the industry as a whole.
The report delves into recent significant developments in the Military Electro-optical & Infrared System Market, highlighting leading vendors and their innovative profiles. These include Airbus SAS, Amentum Services, Inc., Anduril Industries, Inc., Aselsan A.S., BAE Systems PLC, Bharat Electronics Ltd., CONTROP Precision Technologies Ltd., Corning Incorporated, Elbit Systems Ltd., General Dynamics Corporation, Hensoldt AG, HGH Infrared Systems by TTP PLC, IMSAR LLC, Israel Aerospace Industries Ltd., Kollmorgen Corporation, L3Harris Technologies, Inc., Leonardo S.p.A., Lockheed Martin Corporation, Northrop Grumman Corporation, Rafael Advanced Defense Systems Ltd., Raytheon Technologies Corporation, Rheinmetall AG, Saab AB, Safran Group, Teledyne Technologies Incorporated, Thales Group, and The Boeing Company. Actionable Recommendations for Strategic Leadership
The current trends in military electro-optical and infrared systems present several actionable recommendations for industry leaders aiming to secure a competitive edge in a rapidly evolving market. First, there is a pressing need to invest in precision sensor technology and next-generation imaging components that can operate effectively in varied environmental conditions. Embracing modular design architectures and platform integration strategies can not only improve system agility but also enhance overall operational efficiency. Leaders are advised to form strategic partnerships with technology innovators to drive research and development, thereby fostering the creation of tailored solutions that address specific tactical needs. In addition, achieving data integration across multimodal platforms is essential for real-time intelligence analysis and decision-making. A commitment to cultivating in-house expertise in autonomous systems and artificial intelligence will further enable rapid adaptation to emerging threats. Furthermore, aligning product offerings with clearly defined segmentation categories-spanning system types, component elements, technological features, wavelength capabilities, application demands, and platform-specific requirements-can ensure that investments are targeted where they yield the highest returns. Ultimately, leaders must maintain a dynamic approach that combines robust R&D with agile market responsiveness, positioning their organizations to capitalize on future opportunities while navigating the complex landscape of modern defense technology.
Conclusion and Future Perspectives
In conclusion, the military electro-optical and infrared system market is defined by rapid innovations, dynamic segmentation, and shifting regional demands. The integration of advanced sensor technologies and multi-functional imaging systems signifies not only a current evolution but also paves the way for future advancements. As defense priorities evolve in response to global security challenges, stakeholders are encouraged to maintain an adaptive, forward-thinking perspective. The confluence of technological breakthroughs with strategic policy shifts promises a future where enhanced situational awareness and superior operational capabilities become foundational to modern warfare.