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High Spatial Resolution Pushbroom Coding Imaging Spectrometer with a Slit-less Design

机译:无缝设计的高空间分辨率推扫式编码成像光谱仪

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Due to the restriction of slit width, the SNR of onboard slit-based pushbroom imaging spectrometers with high spatial resolution is difficult to make a breakthrough. In order to achieve higher SNR, Hadamard transform imaging spectroscopy is used to design the imaging spectrometer with high spatial resolution by replacing the slit with coding mask while its concept will be introduced in this paper. The SNR performance of coding imaging spectrometer used this technology will be simulated with main specifications which include orbital height of 500km, spatial resolution of 1m and spectral resolution of 5nm. As a result of the simulation, its SNR performance is 5 times superior than slit-based design in the same specifications. Moreover, other advantages of using coding imaging spectroscopy will be introduced in this paper. In addition to solve the problem that lights from other orders can't be excluded when we use grating elements, Fery prisms are introduced to the Offner relay system to design the imaging spectrometer. The result shows that the imaging quality is close to the diffraction limit, and the prisms' dispersive nonlinearity come out to be well corrected. So coding imaging spectroscopy turns out to be a good solution for high spatial resolution design with high SNR.
机译:由于狭缝宽度的限制,具有高空间分辨率的板载狭缝式推扫成像光谱仪的信噪比很难取得突破。为了达到更高的信噪比,本文采用Hadamard变换成像光谱技术通过用编码掩模代替狭缝来设计具有高空间分辨率的成像光谱仪。使用该技术的编码成像光谱仪的SNR性能将以主要规格进行仿真,包括轨道高度500km,空间分辨率1m和光谱分辨率5nm。作为仿真的结果,在相同规格下,其SNR性能比基于狭缝的设计高出5倍。此外,本文还将介绍使用编码成像光谱的其他优点。除了解决使用光栅元件时不能排除来自其他阶次的光的问题外,还将Offery中继系统引入Fery棱镜来设计成像光谱仪。结果表明,成像质量接近衍射极限,棱镜的色散非线性得到了很好的校正。因此,编码成像光谱学证明是具有高SNR的高空间分辨率设计的一个很好的解决方案。

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