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天基平台海云背景下飞机全链路成像特征建模及分析

天基平台海云背景下飞机全链路成像特征建模及分析

ISSN:1007-2276
2020年第49卷第2期
红外技术及应用
袁航,王晓蕊,袁影,张卫国,郭冰涛 Yuan Hang,Wang Xiaorui,Yuan Ying,Zhang Weiguo,Guo Bingtao

空中目标具有高速机动、战略突防和远程精确打击等特点,针对这类目标构建广域、高效、精准探测、连续监视技术已成为空中目标探测体系面临的新挑战.基于空中目标的天基光学探测需求,建立了复杂环境要素综合作用飞机尾焰的光学辐射特征模型,形成飞机尾焰-海面/云层背景-环境大气-光学系统-成像探测器等要素耦合的全数字化链路光谱辐射成像...

The air target has the following characteristics:high-speed maneuver, strategic deep penetration and long-range precision strike. Building wide-area, high-efficiency, accurate detection and continuous monitoring for air targets has become a new challenge for air target detection. In view of the optical detection requirements of air targets, a radiation characteristic model of aircraft plume was established under the combined effect of complex environmental factors. An accurate prediction model of the full chain including aircraft plume-sea/cloud background-environmental atmosphere-optical system-imaging detector was formed. The infrared multi-spectral self-radiation of the aircraft plume was derived based on the measured data. At the same time, the FY-2G remote sensing data was used to invert the sea surface temperature and cloud top temperature distribution in a certain sea area of the South China Sea, and the background radiation model of sea/cloud background was established. On this basis, the effects of background radiation, atmospheric path radiation and atmospheric attenuation on the spectral radiation of the aircraft plume were considered. A model for the upstream spectral radiation of the target at the entrance of the optical system was established. Combined with the diffraction effect of optical imaging system, the detectability of the infrared imaging system in the geostationary orbit under different spectral segments and cloud types was discussed. Research shows that detection efficiency is better in the atmospheric shielding band than in the wide band, and reasonable detection band selection in different backgrounds is conducive to efficient detection of targets.

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ISSN:1007-2276
2020年第49卷第2期
红外技术及应用

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