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Performance assessment of the Clouds and the Earth's Radiant Energy System (CERES) instruments on Terra and Aqua spacecraft

机译:云层和地球辐射能量系统(CERES)仪器上的云和地球辐射能源系统(CERES)仪器上的绩效评估

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Clouds and the Earth's Radiant Energy System (CERES) instruments were designed to measure the reflected shortwave and emitted longwave radiances of the Earth's radiation budget and to investigate the cloud interactions with global radiances for the long-term monitoring of Earth's climate. 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. Of the five CERES instruments that are currently in operation, four of the CERES instruments (Flight Models1 through 4) fly aboard Earth Observing System (EOS) Terra and Aqua platforms with two instruments aboard each spacecraft, in 705 KM sun-synchronous orbits of 10:30 AM and 1:30 PM equatorial crossing time. A rigorous and comprehensive radiometric calibration and validation protocol comprising of various studies was developed to evaluate the calibration accuracy of the CERES instruments. The in-flight calibration of CERES sensors are carried out using the internal calibration module (ICM) comprising of blackbody sources and quartzhalogen tungsten lamp, and a solar diffuser plate known as the Mirror Attenuator Mosaic (MAM). The ICM calibration results are instrumental in determining the changes in CERES sensors' gains after launch from the prelaunch determined values and the on-orbit gain variations. In addition to the broadband response changes derived from the on-board blackbody and the tungsten lamp, the shortwave and the total sensors show a spectrally dependent drop in responsivity in the shorter wavelegth region below one micron that were brought to light through validation studies. The spectrally dependent changes were attributed to the instrument operational modes and the corrections were derived using the sensor radiance comparisons. This paper covers the on-orbit behavior of CERES sensors aboard the Terra and Aqua spacecraft and the determination of the sensor response changes utilising the in-flight calibration and the radiance measurement comparisons viewing various targets. The corrections for the sensor response changes were incorporated in the radiance calculations of CERES Edition3 data products.
机译:云层和地球的辐射能量系统(CERES)仪器旨在测量反射的短波和地球辐射预算的龙波广域,并调查与全球范围的云相互作用,以便为地球气候的长期监测。 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。在目前正在运作的五个CERES仪器中,四个CERES仪器(飞行模型1到4)飞行地球观测系统(EOS)Terra和Aqua平台,在每种航天器上乘坐两种仪器,在705公里的Sun-Synchonous Orbits 10 :30起和下午1:30赤道交叉时间。开发了一种严格和综合的辐射校准和验证协议,包括各种研究来评估CERES仪器的校准精度。 CERES传感器的飞行飞行校准是使用包含黑体源和石英钨灯的内部校准模块(ICM),以及称为镜衰减器马赛克(MAM)的太阳漫射板。 ICM校准结果是在从预先激发所确定的值和On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-On-Orbit Gain变化时辅作备忘录。除了从车载黑体和钨灯衍生的宽带响应变化之外,短波和总传感器还在较短的从一微米以下的较短波线区域中响应响应的光谱依赖性下降,该微米通过验证研究揭示。光谱相关的变化归因于仪器操作模式,并且使用传感器辐射比较导出校正。本文涵盖了CERES传感器的轨道行为,即在TERRA和AQUA SPACECRAFT中,利用飞行中校准和辐射测量比较来确定各种目标的辐射测量比较的传感器响应变化的确定。传感器响应变化的校正在Ceres Edition3数据产品的Radiance计算中纳入了辐射计算。

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