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Predicted dynamic electrothermal performance of thermistor bolometer radiometers for Earth radiation budget applications

机译:用于地球辐射预算应用的热敏电阻辐射热辐射计的动态电热性能预测

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The Earth Radiation Budget Experiment (ERBE) and the Clouds and the Earth's Radiant Energy System (CERES) rely on scanning thermistor bolometer radiometers of a similar design for accomplishing their mission. High-level dynamic electrothermal models of these instruments have been developed on the basis of the Monte Carlo ray-trace, finite-difference, and finite-element methods. The models are capable of simulating the end-to-end response of the ERBE and the CERES instruments to simulated sequences of Earth scenes. Such models will prove useful in the design of future generations of similar instruments, in defining ground-based and in-flight calibration and data-reduction strategies, in the interpretation of flight data, and in understanding data anomalies that might arise after the instruments have been placed in orbit. Two modules that make up the end-to-end model are presented: the optical-thermal radiative module and the thermistor bolometer dynamic electrothermal module. The optics module is used to determine the point-spread function of the optics, which establishes that the instrument has sharply defined footprints on the Earth. Results obtained with the thermistor bolometer dynamic electrothermal module provide valuable insights into the details of channel operation and establish its high level of equivalence. The combination of the two modules allows the point-spread function of the instrument to be determined and reveals the potential of this tool for scanning realistic Earth scenes. # 1997 Optical Society of America
机译:地球辐射预算实验(ERBE)以及云和地球辐射能系统(CERES)依靠类似设计的热敏电阻辐射热辐射计辐射计来完成其任务。这些仪器的高级动态电热模型是在蒙特卡洛射线迹线,有限差分和有限元方法的基础上开发的。这些模型能够模拟ERBE和CERES仪器对地球场景的模拟序列的端到端响应。这样的模型将在设计下一代类似仪器,定义地面和飞行中的校准和数据缩减策略,解释飞行数据以及理解在仪器使用后可能出现的数据异常方面被证明是有用的。被放置在轨道上。提出了构成端到端模型的两个模块:光热辐射模块和热敏电阻测辐射热计动态电热模块。光学模块用于确定光学的点扩展功能,从而确定仪器在地球上具有清晰定义的足迹。用热敏电阻测辐射热计动态电热模块获得的结果可提供有关通道操作细节的宝贵见解,并确定其等效性。这两个模块的组合可以确定仪器的点扩展功能,并揭示了该工具在扫描真实地球场景中的潜力。 #1997美国眼镜学会

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