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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Detection of calibration drifts in spaceborne microwave radiometers using a vicarious cold reference
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Detection of calibration drifts in spaceborne microwave radiometers using a vicarious cold reference

机译:使用替代冷参考检测星载微波辐射计中的校准漂移

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摘要

The coldest possible brightness temperatures observed by a downward-looking microwave radiometer from space are often produced by calm oceans under cloud-free skies and very low humidity. This set of conditions tends to occur with sufficient regularity that an orbiting radiometer will accumulate a useful number of observations within a period of a few days to weeks. Histograms of the radiometer's coldest measurements provide an anchor point against which very small drifts in absolute calibration can be detected. This technique is applied to the TOPEX microwave radiometer (TMR), and a statistically significant drift of several tenths of a Kelvin per year is clearly detected in one of the channels. TMR housekeeping calibration data indicates a likely cause for the drift, as small changes in the isolation of latching ferrite circulators that are used in the onboard calibration-switch assembly. This method can easily be adapted to other microwave radiometers, especially imagers operating at frequencies in the atmospheric windows. In addition to detecting long-term instrument drifts with high precision, the method also provides a means for cross-calibrating different instruments. The cold reference provides a common tie point, even between sensors operating at different polarizations and/or incidence angles.
机译:向下看的微波辐射计从太空观察到的最冷的亮度温度通常是由无云的天空和非常低的湿度下的平静海洋产生的。这组条件趋于以足够的规律性发生,以至于轨道辐射计将在几天到几周的时间内积累大量有用的观测值。辐射计最冷测量的直方图提供了一个固定点,可以在该固定点上检测到绝对校准中的很小漂移。这项技术已应用于TOPEX微波辐射计(TMR),并且在其中一个通道中明显检测到每年有十分之几开尔文的统计学显着漂移。 TMR管家校准数据表明了漂移的可能原因,这是因为车载校准开关组件中使用的自锁铁氧体环行器的隔离度发生了微小变化。这种方法很容易适用于其他微波辐射计,特别是在大气窗口频率下运行的成像仪。除了高精度地检测长期仪器漂移之外,该方法还提供了一种交叉校准不同仪器的方法。即使在以不同极化和/或入射角运行的传感器之间,冷参考也提供了一个公共的联系点。

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