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SNR Improvement for Hyperspectral application using frame and pixel binning

机译:使用框架和像素箱的高光谱应用的SNR改进

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Hyperspectral imaging spectrometer systems are increasingly being used in the field of remote sensing for variety of civilian and military applications. The ability of such instruments in discriminating finer spectral features along with improved spatial and radiometric performance have made such instruments a powerful tool in the field of remote sensing. Design and development of spaceborne hyper spectral imaging spectrometers poses lot of technological challenges in terms of optics, dispersion element, detectors, electronics and mechanical systems. The main factors that define the type of detectors are the spectral region, SNR, dynamic range, pixel size, number of pixels, frame rate, operating temperature etc. Detectors with higher quantum efficiency and higher well depth are the preferred choice for such applications. CCD based Si detectors serves the requirement of high well depth for VNIR band spectrometers but suffers from smear. Smear can be controlled by using CMOS detectors. Si CMOS detectors with large format arrays are available. These detectors generally have smaller pitch and low well depth. Binning technique can be used with available CMOS detectors to meet the large swath, higher resolution and high SNR requirements. Availability of larger dwell time of satellite can be used to bin multiple frames to increase the signal collection even with lesser well depth detectors and ultimately increase the SNR. Lab measurements reveal that SNR improvement by frame binning is more in comparison to pixel binning. Effect of pixel binning as compared to the frame binning will be discussed and degradation of SNR as compared to theoretical value for pixel binning will be analyzed.
机译:超光谱成像分光计系统正越来越多地在遥感领域用于各种民用和军事应用。这样的仪器的具有改进的空间和辐射性能沿判别更精细的频谱特征的能力作出这样的仪器在遥感领域的有力工具。设计并在光学,色散元件,检测器,电子和机械系统的方面的星载超光谱成像分光计姿势许多技术挑战的发展。限定的检测器的类型的主要因素是光谱区域,SNR,动态范围,像素尺寸,像素的数目,帧速率,工作温度等具有较高的量子效率和更高的井深探测器是用于这种应用的优选的选择。基于Si的检测器的CCD服务于VNIR频带的光谱仪,但是从涂抹患有高阱深度的要求。涂片可以通过使用CMOS检测器来控制。硅CMOS检测器具有大格式阵列是可用的。这些探测器通常具有更小的间距和低井深。像素合并技术可以与可用的CMOS检测器被用来满足大刈幅,更高的分辨率和高信噪比的要求。可用性的卫星的较大的停留时间可用于箱多个帧以增加信号采集甚至用较少井深探测器,并最终增加了SNR。实验室测量揭示由帧合并该SNR改善是更相比于像素组合。像素合并相比,帧像素合并作为效果将要讨论的并且相比于将被分析像素合并理论值SNR的劣化。

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