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GOES-16 Advanced Baseline Imager visible near-infrared channel low-light signal-to-noise ratio

机译:GOO-16高级基线成像仪可见近红外通道低光信号 - 噪声比

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Quantifying Geostationary Operational Environmental Satellite R-series (GOES-R) Advanced Baseline Imager (ABI) Channel (Ch) 2 low-light signal-to-noise ratio (SNR) is a core ABI postlaunch product test to validate prelaunch performance expectations of this parameter. For GOES-16, an SNR analysis has been performed to accomplish this goal using ABI Mode-3 MESO visible near-infrared (VNIR) channel L1b radiance product images taken every 30 s between 17:00 UTC and 17:15 UTC on May 23, 2017. Scene pixel data used in the analysis are first screened to ensure they meet the low-light criteria and to minimize scene temporal variability associated with meteorological evolution and geolocation uncertainty in highly inhomogeneous scenes. After such screening, image-to-image radiance time difference statistics are compiled and analyzed to estimate instrument SNR. Based on GOES-R ABI vendor prelaunch testing, minimum and mean expected ABI Ch 2 postlaunch SNR performance at 5% albedo was estimated to be 44.2 and 64.5, respectively. Meanwhile, the SNR computed in this analysis is found to be about 57 +/- 8. Thus, low-light SNR for ABI Ch 2 is shown to meet minimum user expectations. The analysis for the other five GOES-16 ABI VNIR channels is also shown to contrast the SNR for these channels. (C) The Authors. Published by SPIE under a Creative Commons Attribution 4.0 Unported License.
机译:量化地球静止操作环境卫星R系列(GUSE-R)高级基线成像器(ABI)通道(CH)2低光信噪比(SNR)是核心ABI后核产品测试,以验证预期的预期范围。对于GOS-16,已经执行了SNR分析以完成使用ABI Mode-3 Meso可见的近红外(VNIR)通道L1B Radiance产品图像在5月23日在17:00和17:15 UTC之间进行每30秒拍摄的每30岁在2017中,首先筛选用于分析的场景像素数据,以确保它们满足低光标准,并最大限度地减少与气象演变和高度不均匀场景中的地理位置不确定性相关的场景时间变异性。在这种筛选之后,编译和分析图像到图像辐射时间差统计数据以估计仪器SNR。基于GUS-R ABI供应商预先进行测试,最低和平均预期的ABI CH 2在5%Albedo下的SNR性能分别估计为44.2和64.5。同时,发现该分析中计算的SNR约为57 +/- 8.因此,ABI CH 2的低光SNR被显示为满足最低用户期望。还示出了其他五个GOV-16 ABI VNIR通道的分析,以对比这些通道的SNR对比。 (c)作者。由SPIE出版,根据创意公约归因于4.0未受平许可。

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