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Correction of drifts in the measurements of the Clouds and the Earth's Radiant Energy System scanning thermistor bolometer instruments on the Terra and Aqua satellites

机译:在Terra和Aqua卫星上校正云测量中的漂移和地球辐射能量系统扫描热敏电阻钻头仪器的漂移

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The Clouds and the Earth's Radiant Energy System (CERES) is an investigation into the role of clouds and radiation in the Earth's climate system. Four CERES scanning thermistor bolometer instruments are currently in orbit. Flight model 1 (FM1) and 2 (FM2) are aboard the Earth Observing System (EOS) Terra satellite and FM3 and FM4 are aboard the EOS Aqua satellite. Terra was launched in December 1999 and Aqua in May 2002. Both satellites are in high inclination near-polar, sun synchronous orbits. Terra crosses the equator at 10:30 am local time in the descending portion of the orbit. Aqua ascends across the equator at 1:30 pm local time. Each CERES instrument on Terra and Aqua measures in three broadband radiometric regions: the shortwave (0.3 - 5.0 μm), total (0.3 - >100 μm), and window (8-12 μm). Several vicarious analyses have been developed to aid in monitoring the health and stability of the instruments' radiometric measurements. One analysis is a three-channel inter-comparison of the radiometric channel measurements for each instrument. This procedure can derive an estimate of the shortwave portion of the total channel radiance measurement. A second analysis compares temporally synchronized nadir measurements for each sensor of two instruments on the same platform. The three-channel inter-comparison along with the direct comparison and onboard internal calibrations have been used to identify and correct drifting in the measurements of the CERES instruments. Although these drifts and the correction of the measurements have been previously documented, this paper is a continuation of the efforts to quantify and correct drifting in the measurements using ground-processing software. Previous papers only reported drift correction to the CERES instruments on the Terra platform. In addition to the Terra instruments, this paper documents drift correction to the CERES instruments on the Aqua platform.
机译:云层和地球的辐射能量系统(CERES)是对地球气候系统中云和辐射作用的调查。 Four Ceres扫描热敏电阻仪器仪器目前在轨道上。飞行模型1(FM1)和2(FM2)是船舶观测系统(EOS)Terra卫星,FM3和FM4是eos Aqua卫星。 Terra于1999年12月和2002年5月在Aqua推出。两颗卫星都在近极倾斜的阳光下来的阳光同步轨道。 Terra在轨道的下降部分上午10:30穿过赤道。 Aqua在当地时间下午1:30上升赤道。每个CERES仪器在三个宽带辐射区域的Terra和Aqua措施:短波(0.3-5.0μm),总(0.3 - >100μm)和窗口(8-12μm)。已经开发了几种替代分析,以帮助监测仪器辐射测量的健康和稳定性。一个分析是每个仪器的辐射通道测量的三通相互比较。该过程可以导出总信道辐射测量的短波部分的估计。第二分析比较了同一平台上的两个仪器的每个传感器的时间上同步的Nadir测量。三通相互比较以及直接比较和车载内部校准已被用于识别和校正CERES仪器测量中的漂移。虽然先前已经记录了这些漂移和测量的校正,但是本文延续了使用地面处理软件在测量中量化和正确漂移的努力。之前的论文仅报告了Terra平台上的CERES仪器的漂移校正。除了Terra Instruments之外,本文还向Aqua平台上的CERES仪器漂移校正。

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