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Prediction model for diffuser-induced spectral features in imaging spectrometers

机译:成像光谱仪扩散诱导光谱特征的预测模型

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摘要

Wide-field spectrometers for Earth observation missions require in-flight radiometric calibration for which the Sun can be used as a known reference. Therefore, a diffuser is placed in front of the spectrometer in order to scatter the incoming light into the entrance slit and provide homogeneous illumination. The diffuser, however, introduces interference patterns known as speckles into the system, yielding potentially significant intensity variations at the detector plane, called spectral features. There have been several approaches implemented to characterize the spectral features of a spectrometer, e.g., end-to-end measurements with representative instruments. Additionally, in previous publications a measurement technique was proposed, which is based on the acquisition of monochromatic speckles in the entrance slit following a numerical propagation through the disperser to the detection plane. Based on this measurement technique, we present a stand-alone prediction model for the magnitude of spectral features in imaging spectrometers, requiring only few input parameters and, therefore, mitigating the need for expensive measurement campaigns.
机译:地球观测任务的广场光谱仪需要飞行的辐射校准,太阳可用作已知的参考。因此,将扩散器放置在光谱仪的前面,以便将进入的光散到入口狭缝并提供均匀的照明。然而,扩散器将被称为斑点的干扰图案引入系统中,屈服于检测器平面的潜在显着的强度变化,称为光谱特征。已经实现了几种方法来表征光谱仪的光谱特征,例如,具有代表仪器的端到端测量。另外,在先前的出版物中,提出了一种测量技术,其基于在通过分散器到检测平面的数值传播之后的入口狭缝中的单色斑点的获取。基于该测量技术,我们介绍了一种独立预测模型,用于成像光谱仪中的光谱特征幅度,只需要少数输入参数,因此,减轻了对昂贵的测量运动的需求。

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