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Validation studies performed on Clouds and the Earth's Radiant Energy system (CERES) instrument sensors aboard EOS Terra and Aqua spacecraft

机译:在云层和地球辐射能量系统(CERES)仪器传感器上进行了验证研究eos terra和Aqua Spacecraft

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Clouds and the Earth's Radiant Energy system (CERES) sensors provide accurate measurements for the long-term monitoring of the Earth's radiation budget components. The three scanning thermistor bolometer sensors on CERES measure broadband radiances in the shortwave (0.3 to 5.0 micrometer), total (0.3 to >100 micrometer) and in 8 - 12 micrometer water vapor window regions. Currently four of the CERES instruments (Flight Models 1 through 4[FM1 -FM4]) are flying aboard EOS Terra and Aqua platforms with two instruments aboard each spacecraft. The sensor calibrations are performed with onboard blackbody sources and a tungsten lamp as well as a solar diffuser plate known as the Mirror Attenuator Mosaic (MAM). The calibration results collectively depict the ground to orbit shifts and the on-orbit drifts in the sensor reponses. Deep convective clouds and tropical ocean are used as validation targets to understand the sensors' stability on-orbit. With two CERES instruments on the same platform, comparison of measurements from similar sensors viewing the same geolocation are performed. The different calibration and validation studies performed on CERES bring to light the radiometric gain and spectral variation of the sensors from pre and post launch. This paper discusses briefly the contribution of each calibration and validation study in understanding CERES sensors' behavior. It also shows the results from these studies which enabled to correct the data products with a calibration stability of better than 0.2%.
机译:云和地球的辐射能量系统(CERES)传感器为地球的辐射预算成分的长期监测提供了准确的测量。 CERES上的三个扫描热敏电阻钻头传感器测量短波(0.3至5.0微米),总(0.3至> 100微米)和8 - 12微米水蒸气窗口区域的宽带辐射。目前有四个CERES仪器(飞行模型1到4 [FM1 -FM4])正在乘坐EOS Terra和Aqua平台,每个航天器都有两种乐器。使用船上的黑体源和钨灯以及称为镜像衰减器马赛克(MAM)的太阳漫射板进行传感器校准。校准结果共同描绘了地面到轨道偏移,传感器标准中的轨道漂移。深入对流云和热带海洋被用作验证目标,以了解传感器的稳定性轨道上的轨道。在同一平台上有两个CERES仪器,执行从相同的地理位置的类似传感器的测量的比较。对CERE进行的不同校准和验证研究引起了从预先发射和发射后照射传感器的辐射增益和光谱变化。本文简要讨论了每个校准和验证研究在了解CERES传感器行为中的贡献。它还显示了这些研究的结果,该研究能够校正数据产品,校准稳定性优于0.2%。

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