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Signal-to-noise ratio reduction due to image smear concerning spaceborne imaging spectrometers for remote sensing of the Earth

机译:与用于遥感地球的星载成像光谱仪有关的图像拖影导致的信噪比降低

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Abstract: In the last decade imaging spectrometers for Earth observation were developed by different government agencies because of the ability to use the full information of a spectrum as a major tool in the study of physical and biological processes of the Earth. Instead of a few relatively broad spectral bands, the new imager concepts provide the detection of many contiguous narrow spectral bands by applying the technology of 2D detectors. The step from 1D to 2D solid-state imagers makes it necessary to include the typical behavior of these advanced imagers on the signal-to-noise (SN) ratio analysis. A simulation of maximum and minimum radiances for typical spectral signatures of the Earth and the verification of these radiances with Modular Optoelectronic Scanner data give the source for the calculation of electronics generated at the imager's detector. Different sensors will be compared concerning water-minimum and vegetation-maximum signals, and the degradation of the SN ratio due to image-smear of 2D solid-state imagers is demonstrated. A developed smear parameter gives a tool for analyzing the spectrometer performance during the conceptual phase. !8
机译:摘要:在过去的十年中,由于能够将光谱的全部信息用作研究地球物理和生物过程的主要工具,因此由不同的政府机构开发了用于地球观测的成像光谱仪。代替一些相对较宽的光谱带,新的成像器概念通过应用2D检测器技术提供了许多连续的窄光谱带的检测。从1D固态成像器到2D固态成像器的步骤使我们有必要在信噪比(SN)分析中包括这些高级成像器的典型行为。模拟地球典型光谱特征的最大和最小辐射率,并使用模块化光电扫描仪数据对这些辐射率进行验证,为计算在成像仪探测器处产生的电子量提供了来源。将比较不同传感器的最小水信号和最大植被信号,并说明由于2D固态成像仪的图像拖影而导致的信噪比下降。开发的拖尾参数为在概念阶段分析光谱仪性能提供了一种工具。 !8

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