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Design and Optimization of the Calibration Procedure for a Miniaturized Fourier Transform Spectrometer

机译:小型傅里叶变换光谱仪校准程序的设计与优化

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This paper presents a Fourier transform infrared (FT-IR) spectrometer calibration procedure based on an unusual source made from a spectrally selective surface. An alternative solution to the usual calibrators has been developed to cope with the tight mass budget of an instrument devoted to Mars surface exploration. The designed system has proved effective, in terms of achievable radiometric accuracy, despite the drawbacks due to the significant reflectivity of the sources. The proposed procedure is a standard "two-source" approach in which both cold and hot sources are thermally controlled surfaces, similar to an optical solar reflector, associated to a filament lamp. Such a system allows the required signal to be achieved in the 2-25 (mu)m instrument wavelength range. Source optimization was performed using, as a cost function, the computed radiometric uncertainty, while the required absolute accuracy of the instrument was imposed as the optimization constraint.
机译:本文提出了一种傅立叶变换红外(FT-IR)光谱仪校准程序,该程序基于由光谱选择性表面制成的不寻常光源。已开发出一种替代常规校准器的解决方案,以应对专用于火星表面探测的仪器的大量预算。尽管可实现辐射精确度方面的缺陷,但设计的系统已证明是有效的,尽管这些缺陷是由于光源的反射率高引起的。所提出的过程是一种标准的“两源”方法,其中冷源和热源都是与灯丝灯相关的类似于光学太阳能反射镜的热控制表面。这样的系统允许在2-25μm的仪器波长范围内获得所需的信号。使用计算出的辐射不确定度作为成本函数执行源优化,而将所需的仪器绝对精度作为优化约束。

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