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Optical Design of Imaging Spectrometer Based on Linear Variable Filter for Nighttime Light Remote Sensing

机译:基于线性可变滤波器对夜间光遥感的影像光谱仪光学设计

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摘要

Nighttime light remote sensing has unique advantages on reflecting human activities, and thus has been used in many fields including estimating population and GDP, analyzing light pollution and monitoring disasters and conflict. However, the existing nighttime light remote sensors have many limitations because they are subject to one or more shortcomings such as coarse spatial resolution, restricted swath width and lack of multi-spectral data. Therefore, we propose an optical system of imaging spectrometer based on linear variable filter. The imaging principle, optical specifications, optical design, imaging performance analysis and tolerance analysis are illustrated. The optical system with a focal length of 100 mm, F-number 4 and 43° field of view in the spectrum range of 400–1000 nm is presented, and excellent image quality is achieved. The system can obtain the multi-spectral images of eight bands with a spatial resolution of 21.5 m and a swath width of 320 km at the altitude of 500 km. Compared with the existing nighttime light remote sensors, our system possesses the advantages of high spatial and high spectral resolution, wide spectrum band and wide swath width simultaneously, greatly making up for the shortage of the present systems. The result of tolerance analysis shows our system satisfy the requirements of fabrication and alignment.
机译:夜间光遥感对反映人类活动具有独特的优势,因此已在许多领域中使用,包括估算人口和GDP,分析光明污染和监测灾害和冲突。然而,现有的夜间灯光远程传感器具有许多限制,因为它们受到一个或多个缺点,例如粗略空间分辨率,限制条空间宽度和缺少多频谱数据。因此,我们提出了一种基于线性可变滤波器的成像光谱仪的光学系统。图示了成像原理,光学规格,光学设计,成像性能分析和公差分析。呈现出在400-1000nm的光谱范围内的焦距为100mm,f-number 4和43°视场的光学系统,并且实现了优异的图像质量。该系统可以获得八个带的多光谱图像,空间分辨率为21.5米,高度为320公里的宽度宽度为500公里。与现有的夜间光远程传感器相比,我们的系统同时具有高空间和高频谱分辨率,宽度频带和宽条宽度的优点,大大构成了本系统的短缺。耐受性分析的结果显示我们的系统满足制造和对准的要求。

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