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Analysis and Reduction of Solar Stray Light in the Nighttime Imaging Camera of Luojia-1 Satellite

机译:罗家1号卫星夜间成像摄像机太阳杂散光的分析与减少。

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摘要

As one of the experimental payloads on Luojia-1 satellite, the nighttime imaging camera works with a high sensitivity to acquire nighttime light on earth. Solar stray light is a fatal problem for optical satellite works in the polar orbit, even for nighttime scene imaging, resulting in image saturation and light signal detection failure. To solve this problem, an analysis of the range of solar incident angles was conducted firstly. Based on the result, a special-shaped baffle was designed to avoid direct sunlight incidence. Moreover, the capability of stray light elimination of the lens was enhanced by an order of magnitude via optimizing the internal structure. An evaluation of secondary scattering stray lights into the camera from surrounding parts was performed based on a real satellite model. The results showed that the stray light elimination reaches a 10−10 order, meeting design requirements. Utilizing on-orbit images, the ability of satellites in illuminated areas to obtain artificial lights in dawn-dusk area was verified, proving the effectiveness of the stray light elimination design.
机译:作为Luojia-1卫星上的实验有效载荷之一,夜间成像相机具有很高的灵敏度,可以获取地球上的夜间光。太阳杂散光是极地轨道上的光学卫星工作的致命问题,即使是夜间场景成像,也会导致图像饱和和光信号检测失败。为了解决这个问题,首先对太阳入射角的范围进行了分析。根据结果​​,设计了一种特殊形状的挡板,以避免阳光直射。而且,通过优化内部结构,透镜的杂散光消除能力提高了一个数量级。基于真实的卫星模型,对从周围部分进入相机的二次散射杂散光进行了评估。结果表明,杂光消除达到了10 −10 的数量级,满足设计要求。利用在轨图像,验证了照明区域的卫星获取黎明黄昏区域人造光的能力,从而证明了杂散光消除设计的有效性。

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