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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >JPSS-1/NOAA-20 VIIRS Day-Night Band Prelaunch Radiometric Calibration and Performance
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JPSS-1/NOAA-20 VIIRS Day-Night Band Prelaunch Radiometric Calibration and Performance

机译:JPSS-1 / NOAA-20 VIIRS昼夜波段发射前辐射校准和性能

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摘要

The Visible Infrared Imaging Radiometer Suite (VIIRS) on board the first Joint Polar-Orbiting Satellite System series 1 (JPSS-1) has a panchromatic, three gain stage, day-night band (DNB) capable of imaging the Earth under illumination conditions ranging from reflected moonlight to daytime scenes. The DNB has four charged-coupled devices (CCDs) with 32 different modes of time-delay integration and subpixel aggregation to achieve high SNR in low light conditions while maintaining roughly constant spatial resolution across scan. During the prelaunch testing phase, these 32 different aggregation modes are separately calibrated over a large dynamic range (covering seven orders of magnitude) through a series of radiometric tests designed to generate initial calibration coefficients for the sensor data record (SDR) operational algorithm, assess radiometric performance, and determine compliance with the sensor design requirements. Early in the environmental testing at the Raytheon El Segundo facility, nonlinear behavior was discovered in some DNB edge of scan aggregation modes at low signal levels. In response to this nonlinearity, the test program was altered to characterize the radiometric performance both in the baseline configuration and with a modified aggregation scheme that eliminates the modes used at the end of scan, replacing them with an unaffected adjacent mode and trading off spatial resolution for improved linearity. Presented in this paper is the radiometric performance under both sensor configurations including dynamic range, sensitivity, radiometric uncertainty, and nonlinearity along with a discussion of the potential impact to DNB on-orbit calibration and SDR performance.
机译:第一个联合极地轨道卫星系统系列1(JPSS-1)上的可见红外成像辐射计套件(VIIRS)具有全色,三增益级,昼夜波段(DNB),能够在光照条件下对地球进行成像从反射的月光到白天的场景。 DNB具有四个电荷耦合器件(CCD),它们具有32种不同的时间延迟积分和子像素聚合模式,以在弱光条件下实现高SNR,同时在整个扫描过程中保持大致恒定的空间分辨率。在启动前测试阶段,通过一系列辐射测试,在较大的动态范围(覆盖七个数量级)中分别校准了这32种不同的聚合模式,这些测试旨在生成传感器数据记录(SDR)操作算法的初始校准系数,辐射性能,并确定是否符合传感器设计要求。在Raytheon El Segundo设施的环境测试的早期,在低信号水平的扫描聚合模式的某些DNB边缘发现了非线性行为。为了应对这种非线性,测试程序进行了更改,以在基线配置和改进的聚合方案中表征辐射性能,该聚合方案消除了扫描结束时使用的模式,将其替换为不受影响的相邻模式并权衡了空间分辨率改善线性度。本文介绍的是两种传感器配置下的辐射测量性能,包括动态范围,灵敏度,辐射测量不确定性和非线性,并讨论了对DNB在轨校准和SDR性能的潜在影响。

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