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A Limb Atmospheric Radiance Inversion Method based on a Sun-synchronous Orbit Satellite

机译:基于太阳同步轨道卫星的肢体大气辐射率反演方法

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It is always affected by the influence of limb atmosphere when the space-based remote sensing systems detect spatial targets using limb observation mode. In this paper, the characteristics of the limb atmosphere and the impact of limb atmosphere to target observation are theoretical modeled. Based on the model, we propose an algorithm to compute the vertical structure of atmosphere radiance through the image of limb atmosphere as well as the star image. Realization of atmosphere radiance under similar situation can then be computed based on inversion algorithm proposed in the paper. The stellar images of different areas including areas over Antarctic and Equator are captured by in-orbit space borne camera. The method of how to inverse from the gray image to atmosphere limb radiance in engineering applications is described in detail and statistical analysis of the result of inversion to limb atmosphere radiance is conducted whose trend is consistent with simulation result of MODTRAN which increases at lower altitude to a peak value then drop to zero slowly while there are two peaks in the statistical radiance distribution curves illustrating the polar light over Antarctic.
机译:当天基遥感系统使用肢体观察模式检测空间目标时,它总是受到肢体气氛的影响。本文对肢体气氛的特征以及肢体气氛对目标观测的影响进行了理论建模。基于该模型,我们提出了一种通过肢体大气图像和恒星图像计算大气辐射垂直结构的算法。然后,基于本文提出的反演算法,可以计算出相似情况下大气辐射的实现。在轨太空相机捕获了包括南极和赤道上空在内的不同区域的恒星图像。详细介绍了在工程应用中如何从灰度图像反转为大气肢体辐射率的方法,并对肢体大气辐射率的反演结果进行了统计分析,其趋势与MODTRAN的模拟结果一致,MODTRAN的模拟结果在较低的高度增加。峰值然后缓慢下降到零,而统计辐射分布曲线中有两个峰值,说明南极上的极光。

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