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Optical design and tolerancing of a hyperspectral imaging spectrometer

机译:高光谱成像光谱仪的光学设计和公差

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A hyperspectral imaging spectrometer covering the wavelength range from 420 nm to 1000 nm is designed for the purpose of monitoring Earth's environmental change. It has an entrance slit length of 24 μm, f/# of 3, smile and keystone distortion smaller than 20% of the pixel pitch and a spectral resolution of 6.5 nm. We design and review thirteen systems including one Offner system, two Schwarzschild systems and ten TMA systems for such specifications. Freeform surface and aspheric surface are used in some of the systems to achieve the required system parameters. With all system performance being summarized and evaluated, advantages and disadvantages of three different system types are compared. We down select two systems for further fine adjustments and tolerancing analysis. Final systems with superior performance and detailed tolerancing analysis are given at the end.
机译:设计了覆盖从420 nm到1000 nm波长范围的高光谱成像光谱仪,目的是监测地球的环境变化。它的入口缝隙长度为24μm,f /#为3,微笑和梯形失真小于像素间距的20%,光谱分辨率为6.5 nm。我们设计和审查了13个系统,其中包括1个Offner系统,2个Schwarzschild系统和10个TMA系统。在某些系统中使用了自由曲面和非球面,以实现所需的系统参数。在总结和评估所有系统性能的情况下,比较了三种不同系统类型的优缺点。我们选择两个系统进行进一步的微调和公差分析。最后给出了具有卓越性能和详细公差分析的最终系统。

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