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Integrated Analysis of FORMOSAT-5 Remote Sensing Instrument in Space

机译:空间中Formosat-5遥感仪的综合分析

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FORMOSAT-5 is the first space program fully developed by National Space Organization (NSPO). The Remote Sensing Instrument (RSI) will provide spatial resolution of 2 meters in panchromatic band and 4 meters in multi-spectral bands. The optical system is composed of two reflective aspheric mirrors and spherical corrector lens set. CFRP structure is used for the optomechanical system to reduce mass. Although the telescope system can be well aligned on ground, the space thermal environment can result in thermal distortion of telescope system and impact the final image quality. Flight predictions of FORMOSAT-5 RSI were done to get the quantitative thermal distortion of mirrors and structural system. The system optical performance, i.e. MTF, was also derived by the optical model with the input from thermal distortion results, i.e. Zernike polynomials. RSI performance in space is location-dependent. Detailed analysis results and discussions are revealed in this paper.
机译:Formosat-5是国家空间组织(NSPO)完全开发的第一个空间计划。遥感仪器(RSI)将在全谱带中提供2米的空间分辨率,在多光谱带中为4米。光学系统由两个反射球镜和球形校正镜头组组成。 CFRP结构用于光学机械系统以减少质量。虽然望远镜系统可以在地上保持良好,但空间热环境可能导致望远镜系统的热失真并影响最终的图像质量。完成Formosat-5 RSI的飞行预测以获得镜子和结构系统的定量热变形。系统光学性能,即MTF,光学模型也是由热失真结果的输入来源的,即Zernike多项式。空间中的RSI性能是依赖于位置的。详细的分析结果和讨论在本文中揭示。

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