![]() |
市场调查报告书
商品编码
1980645
短波红外线成像市场规模、份额、成长率和全球产业分析:按类型、应用和地区划分,洞察和预测至 2026-2034 年。Short Wave Infrared Imaging Market Size, Share, Growth and Global Industry Analysis By Type & Application, Regional Insights and Forecast to 2026-2034 |
||||||
2025年全球短波红外线(SWIR)影像市场规模为13.9亿美元,预计将从2026年的14.8亿美元成长至2034年的22.8亿美元,预测期内(2026-2034年)复合年增长率(CAGR)为6.00%。北美地区在2025年占据市场主导地位,市占率达37.60%,主要得益于其强劲的国防投资和先进成像技术的应用。
短波红外线(SWIR)成像技术能够捕捉波长范围在0.9至1.7微米之间的光,该波长范围的光肉眼不可见。这使得即使在低光源、雾天、烟雾瀰漫或尘土飞扬的环境中,也能获得高解析度影像。 SWIR技术广泛应用于国防监视、工业检测、半导体製造、农业监测、医疗诊断和太空探勘等领域。
美国国家航空暨太空总署(NASA)、欧洲太空总署(ESA)和国防高级研究计画局(DARPA)等政府机构正在积极资助利用短波红外线(SWIR)技术的任务。泰莱福瑞尔(Teledyne FLIR)、林瑞德(Lynred)和滨松光子学等领先的私人公司正在开发先进的感测器和相机。
市场规模及预测(截至报告年度)
市场动态
市场驱动因素
国防和监控领域的需求不断增长
短波红外线成像对于军事监视、边境监控、侦察和目标侦测至关重要。它能够穿透薄雾、烟雾和浓雾,即使在恶劣环境下也能提供卓越的能见度。
2023年2月,美国空军授予普林斯顿红外线技术公司第二阶段小型企业创新研究(SBIR)合同,用于开发基于无人机的高光谱影像所需的扩展波长短波红外线(SWIR)感测器。此外,InGaAs和HgCdTe等材料的进步正在提高系统效率并实现小型化。
短波红外线系统正越来越多地整合到无人机、直升机、装甲车和士兵穿戴的系统中。
市场限制因素
高昂的初始成本仍然是一个主要障碍。短波红外线相机使用诸如砷化铟镓(InGaAs)和碲镉汞(MCT)等特殊材料,与传统成像系统相比,这显着增加了製造成本。
由于初始投资成本高且整合复杂,许多中小企业 (SME) 对采用 SWIR 技术犹豫不决。
市场机会
精密农业的发展
短波红外线(SWIR)技术能够及早检测作物压力、水分含量、土壤盐碱化和污染情况,从而支持永续农业发展并提高作物产量。
2024 年,印度太空研究组织 (ISRO) 与法国国家太空研究中心 (CNES) 合作进行了 TRISHNA 任务,该任务提供高解析度热成像和短波红外线 (SWIR) 数据,用于监测全球自然资源。
市场挑战
与现有系统整合涉及技术复杂性。许多产业依赖可见光和热热成像系统,而整合短波红外线感测器需要客製化校准和介面。这会导致部署延迟和营运成本增加。
市场趋势
短波红外线相机的微型化
关键趋势之一是短波红外线(SWIR)相机的微型化,从而实现更轻、更节能、更紧凑的设计。这些小型化系统可以整合到无人机、手持设备和汽车平臺中,增强战术性机动性。
2025 年 7 月,Allied Vision 发布了「Goldeye Pro SWIR」系列产品,该系列产品采用SONY的 SenSWIR 感测器和热电冷却技术。
細項分析
透过技术
波段
透过使用
2024 年 3 月,Tomla Foods 将 SWIR 感测器整合到其先进的食品分类系统中。
按组件
2023 年 9 月,Lynred 开发出新一代 SWIR 感测器,具有更高的灵敏度和更小的像素间距。
按行业
2024 年 4 月,普林斯顿红外线技术公司获得了 NASA 的第一阶段 SBIR(短波红外线)成像仪合同,用于开发先进的 SWIR成像器。
2023 年 6 月,Coherent 公司与 TriEye 合作开发用于汽车应用的 SWIR 系统。
按地区
北美洲
2024 年 2 月,Leonardo DRS 为美国陆军的 JETS II 专案采用了 Quantum Imaging 的 SWIR 相机。
欧洲
工业自动化和品质检测正在推动经济成长。德国在製造业和半导体检测领域引领这些技术的应用。
亚太地区
日本、中国和韩国等国家正大力投资半导体测试和电子产品製造。
2024 年 7 月, SONY半导体解决方案公司扩展了其面向工业应用的基于 CMOS 的 SWIR 感测器产品线。
世界其他地区
在拉丁美洲,短波红外线成像仪正被引入农业和采矿领域。在中东和非洲,其应用重点在于提升国防能力以及石油和天然气检测。
2025 年 3 月,阿联酋 EDGE 集团测试了配备 SWIR 的无人机监视系统。
儘管北美在2025年仍将保持领先地位,但亚太和欧洲的工业及製造业领域也正在快速普及应用。儘管实施成本高且整合面临诸多挑战,但感测器小型化、CMOS技术和高光谱影像的进步有望加速其应用。
预测年份:2026年
透过技术
波段
透过使用
按组件
按行业
按地区
The global short-wave infrared (SWIR) imaging market was valued at USD 1.39 billion in 2025 and is projected to grow from USD 1.48 billion in 2026 to USD 2.28 billion by 2034, exhibiting a CAGR of 6.00% during the forecast period (2026-2034). North America dominated the market with a 37.60% share in 2025, supported by strong defense investments and advanced imaging adoption.
Short-wave infrared (SWIR) imaging captures light in the 0.9-1.7 micron wavelength range, which is invisible to the human eye. It enables high-resolution imaging in low-light, foggy, smoky, or dusty environments. SWIR technology is widely used in defense surveillance, industrial inspection, semiconductor manufacturing, agriculture monitoring, medical diagnostics, and space exploration.
Government agencies such as NASA, European Space Agency, and DARPA actively fund SWIR-based missions. Leading private players including Teledyne FLIR, Lynred, and Hamamatsu Photonics are developing advanced sensors and cameras.
MARKET SIZE & FORECAST (AS PER REPORT YEAR)
MARKET DYNAMICS
Market Drivers
Rising Demand in Defense & Surveillance
SWIR imaging is critical for military surveillance, border monitoring, reconnaissance, and target detection. Its ability to penetrate haze, smoke, and fog provides superior visibility in harsh conditions.
In February 2023, the U.S. Air Force awarded Princeton Infrared Technologies a Phase II SBIR contract to develop extended-wavelength SWIR sensors for UAV-based hyperspectral imaging. Additionally, advancements in materials such as InGaAs and HgCdTe are improving system efficiency and compactness.
SWIR systems are increasingly integrated into drones, helicopters, armored vehicles, and soldier-mounted systems.
Market Restraints
High implementation costs remain a major barrier. SWIR cameras use specialized materials such as Indium Gallium Arsenide (InGaAs) and Mercury Cadmium Telluride (MCT), significantly increasing production costs compared to conventional imaging systems.
Many small and medium enterprises hesitate to adopt SWIR technology due to high upfront investment and integration complexity.
Market Opportunities
Growth in Precision Agriculture
SWIR technology enables early detection of crop stress, moisture levels, soil salinity, and contamination. It supports sustainable farming and improved crop yields.
In 2024, Indian Space Research Organisation collaborated with CNES on the TRISHNA mission to deliver high-resolution thermal and SWIR data for global natural resource monitoring.
Market Challenges
Integration with legacy systems presents technical complexity. Many industries rely on visible and thermal imaging systems, requiring customized calibration and interfaces to incorporate SWIR sensors. This slows deployment and increases operational costs.
MARKET TRENDS
Miniaturization of SWIR Cameras
A key trend is the miniaturization of SWIR cameras, making them lighter, energy-efficient, and compact. These smaller systems can be integrated into UAVs, handheld devices, and vehicle platforms, enhancing tactical mobility.
In July 2025, Allied Vision introduced the Goldeye Pro SWIR series featuring Sony SenSWIR sensors with thermo-electric cooling.
SEGMENTATION ANALYSIS
By Technology
By Wavelength Range
By Application
In March 2024, Tomra Food integrated SWIR sensors into advanced food sorting systems.
By Component
In September 2023, Lynred developed next-generation SWIR sensors with improved sensitivity and reduced pixel pitch.
By Vertical
In April 2024, Princeton Infrared Technologies received a Phase I SBIR contract from NASA for advanced SWIR imager development.
In June 2023, Coherent Corp. partnered with TriEye for automotive SWIR systems.
REGIONAL OUTLOOK
North America
In February 2024, Leonardo DRS selected Quantum Imaging's SWIR camera for the U.S. Army's JETS II program.
Europe
Growth driven by industrial automation and quality inspection. Germany leads adoption in manufacturing and semiconductor inspection.
Asia Pacific
Countries such as Japan, China, and South Korea are investing heavily in semiconductor inspection and electronics manufacturing.
In July 2024, Sony Semiconductor Solutions expanded CMOS-based SWIR sensors for industrial applications.
Rest of the World
Latin America is adopting SWIR for agriculture and mining. The Middle East & Africa is focusing on defense modernization and oil & gas inspection.
In March 2025, UAE's EDGE Group tested SWIR-enabled UAV surveillance systems.
COMPETITIVE LANDSCAPE
Major companies operating in the market include:
These players are focusing on R&D investments, CMOS-based alternatives, AI-enabled processing, and strategic collaborations.
CONCLUSION
The global SWIR imaging market is projected to grow from USD 1.39 billion in 2025 to USD 2.28 billion by 2034, at a CAGR of 6.00%. Strong demand from defense surveillance, aerospace, semiconductor inspection, and precision agriculture is driving expansion.
North America remains the dominant region in 2025, while Asia Pacific and Europe are witnessing rapid adoption across industrial and manufacturing sectors. Despite high implementation costs and integration challenges, advancements in sensor miniaturization, CMOS technology, and hyperspectral imaging are expected to accelerate adoption.
Forcast Year 2026
By Technology
By Wavelength Range
By Application
By Component
By Vertical
By Geography