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WindSat on-orbit warm load calibration

机译:WindSat在轨热负荷校准

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Postlaunch calibration of the WindSat polarimetric microwave radiometer indicates the presence of thermal gradients across the calibration warm load during some portions of the year. These gradients are caused by reflected solar illumination or eclipse and increase total calibration errors. This paper describes the WindSat warm load and presents the measured on-orbit data which clearly illustrate the anomalous responses seen in the warm load calibration data. Detailed thermal modeling predictions of the WindSat on-orbit performance are presented along with the satellite orbital geometry model with solar inputs in order to explain the physical causes of the thermal gradients. To reduce the resultant calibration errors during periods of anomalous warm load behavior, a correction algorithm was developed which uses the physical temperatures of the gain stages in the receiver electronics to calculate an effective gain. This calibration algorithm is described, and its performance and expected accuracy are examined.
机译:WindSat偏振微波辐射计的启动后校准表明,在一年中的某些时间段内,在校准热负荷上存在热梯度。这些梯度是由反射的太阳光照或日食引起的,并增加了总校准误差。本文介绍了WindSat热负荷并提供了测得的在轨数据,这些数据清楚地说明了在热负荷校准数据中看到的异常响应。为了说明热梯度的物理原因,将对WindSat在轨性能进行详细的热模型预测以及带有太阳输入的卫星轨道几何模型。为了减少异常的热负荷行为期间产生的校准误差,开发了一种校正算法,该算法使用接收器电子设备中增益级的物理温度来计算有效增益。描述了该校准算法,并检查了其性能和预期精度。

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