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The effect of complex background infrared radiation on target scattering radiance

机译:复杂背景红外辐射对目标散射辐射的影响

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The scattering of complex background (the Sun, the Sea and the Sky background) infrared radiation from a target is studied. By coordinate transformation, summation of the visible facets, integration to wavelength, finally angular distribution formula of integral scattering radiance from a lambertian target is achieved. With the Solar spectrum radiance and the sea & the sky background''s spectrum irradiance calculated by Modtran Software, a lambertian cylinder is taken as an example, in wavebands 3∼5µm and 8∼12µm, angular distribution of horizontal and vertical targets'' integral scattering radiance is simulated numerically. The results show that: in both wavebands scattering radiance of the sea & the sky background radiation from the target plays an important role, especially in waveband 8∼12µm scattering radiance of the Sun radiation from the target is far less than that of the sea & the sky background radiation, it could be ignorable; and in waveband 8∼12µm scattering radiance of the sea & the sky background radiation than that in waveband 3∼5µm; and scattering radiance from the horizontal target is stronger than that from the vertical target, therefore this attitude is more suitable for target detection in waveband 8∼12µm.
机译:研究了来自目标的复杂背景(太阳,海洋和天空背景)红外辐射的散射。通过坐标变换,得到可见小平面的总和,积分到波长,最后得到朗伯目标的整体散射辐射的角度分布公式。利用Modtran软件计算的太阳光谱辐射度和海天背景光谱辐照度,以朗伯圆柱体为例,在3〜5μm和8〜12μm的波段中,水平和垂直目标的角度分布''数值模拟了积分散射辐射。结果表明:在两个波段中,目标的海和天散射辐射都起着重要作用,尤其是在8〜12μm波段中,目标的太阳辐射散射辐射远小于目标和目标的太阳辐射。天空的背景辐射可能是可忽略的; 8〜12μm波段的海和天空背景辐射的散射辐射比3〜5μm波段的大。水平目标的散射辐射强于垂直目标,因此这种姿态更适合于8〜12μm波段的目标检测。

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