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Radiometric calibration and performance trends of the Clouds and Earth's Radiant Energy System (CERES) Instrument Sensors onboard the Aqua and Terra Spacecraft

机译:Aqua和Terra航天器上的云和地球辐射能系统(CERES)仪器传感器的辐射定标和性能趋势

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The Clouds and Earth's Radiant Energy System (CERES) instruments help to study the impact of clouds on the earth's radiation budget. There are currently five instruments- two each on board Aqua and Terra spacecraft and one on the Suomi NPP spacecraft to measure the earth's reflected shortwave and emitted longwave energy, which represent two components of the earth's radiation energy budget. Flight Models (FM) 1 and 2 are on Terra, FM 3 and 4 are on Aqua, and FM5 is on Suomi NPP. The measurements are made by three sensors on each instrument: a shortwave sensor that measures the 0.3-5 microns wavelength band, a window sensor that measures the water vapor window between 8-12 microns, and a total sensor that measures all incident energy (0.3- >100 microns). The required accuracy of CERES measurements of 0.5% in the longwave and 1% in the shortwave is achieved through an extensive pre-launch ground calibration campaign as well as on-orbit calibration and validation activities. On-orbit calibration is carried out using the Internal Calibration Module (ICM) that consists of a tungsten lamp, blackbodies, and a solar diffuser known as the Mirror Attenuator Mosaic (MAM). The ICM calibration provides information about the stability of the sensors' broadband radiometric gains on-orbit. Several validation studies are conducted in order to monitor the behavior of the instruments in various spectral bands. The CERES Edition-4 data products for the FM1-FM4 instruments incorporate the latest calibration methodologies to improve on the Edition-3 data products. In this paper, we discuss the updated calibration methodology and present some validation studies to demonstrate the improvement in the trends using the CERES Edition-4 data products for all four instruments.
机译:云和地球的辐射能系统(CERES)仪器有助于研究云对地球辐射预算的影响。当前有五种仪器-分别在Aqua和Terra航天器上两台,在Suomi NPP航天器上一台用于测量地球的反射短波能量和发射的长波能量,这代表了地球辐射能预算的两个组成部分。飞行模型(FM)1和2在Terra上,FM 3和4在Aqua上,而FM5在Suomi NPP上。测量由每台仪器上的三个传感器进行:一个短波传感器测量0.3-5微米的波段,一个窗口传感器测量8-12微米之间的水蒸气窗口,一个总传感器测量所有入射能量(0.3 -> 100微米)。通过广泛的发射前地面校准活动以及在轨校准和确认活动,可以实现CERES测量所需的长波0.5%和短波1%的精度。使用内部校准模块(ICM)进行在轨校准,该模块由钨丝灯,黑体和称为镜衰减器马赛克(MAM)的太阳扩散器组成。 ICM校准可提供有关传感器的宽带辐射度在轨增益稳定性的信息。为了监视仪器在各种光谱带中的行为,进行了一些验证研究。 FM1-FM4仪器的CERES版本4数据产品采用了最新的校准方法,以改进版本3数据产品。在本文中,我们讨论了更新的校准方法,并提供了一些验证研究,以证明使用CERES Edition-4数据产品针对所有四种仪器的趋势方面的改善。

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