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Characterization of Terra MODIS Blackbody Uniformity and Stability

机译:Terra MODIS黑体均匀性和稳定性的表征

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MODIS thermal emissive bands (TEB) are calibrated on-orbit via its on-board blackbody (BB) and observations through its space view (SV) port. For Terra MODIS, the BB temperature is nominally controlled at 290K. Periodically, a BB warm-up and cool-down (WUCD) process is scheduled and executed, during which the BB temperatures vary from approximately 272K, the instrument ambient temperature, to 315K. The on-board BB temperatures are monitored, on a scan-by-scan basis, using a set of 12 thermistors uniformly embedded in the BB panel. These thermistors were characterized pre-launch and are traceable to the NIST temperature standards. Using more than 10 years of on-orbit measurements, this paper reports Terra MODIS BB performance in terms of its temperature uniformity and stability. On-orbit characterization is made when the BB is operated under the same or different configurations and conditions. In this study, the variations of BB temperatures from its 12 individual thermistors are analyzed scan-by-scan in order to assess its short-term stability and uniformity. To illustrate the long-term stability over the entire mission, only the granule averaged BB temperatures are used. Results from this study will provide useful information for future missions and sensors, such as NPP VIIRS and LDCM TIRS, in support of their on-board BB design, operation, and performance assessments.
机译:MODIS热发射带(TEB)通过其机载黑体(BB)在轨道上进行校准,并通过其空间视图(SV)端口进行观测。对于Terra MODIS,BB温度名义上控制在290K。定期安排并执行BB预热和冷却(WUCD)过程,其间BB温度从大约272K(仪器环境温度)变化到315K。使用均匀嵌入在BB面板中的一组12个热敏电阻,逐个扫描地监控车载BB温度。这些热敏电阻在启动前已经过表征,可追溯到NIST温度标准。经过十多年的在轨测量,本文报道了Terra MODIS BB在温度均匀性和稳定性方面的性能。当BB在相同或不同的配置和条件下运行时,将进行在轨表征。在这项研究中,逐个扫描分析了其12个独立热敏电阻的BB温度变化,以评估其短期稳定性和均匀性。为了说明整个任务的长期稳定性,仅使用颗粒平均BB温度。这项研究的结果将为未来的任务和传感器(例如NPP VIIRS和LDCM TIRS)提供有用的信息,以支持其机载BB设计,运行和性能评估。

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