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Boreal, Temperate, and Tropical Forests as Vicarious Calibration Sites for Spaceborne Microwave Radiometry

机译:北方,温带和热带森林作为星载微波辐射测定的替代定标点

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We develop methods of using boreal, temperate, and tropical forests as vicarious calibration sites for spaceborne microwave radiometers. The extended sites and improved calibration techniques enable examining warm-scene performances as a complement to cold scenes over the ocean, providing information about scan-dependent biases, detecting and correcting possible calibration errors, and intercalibrating different radiometers. Specifically, this paper shows results as follows. Warm-scene calibration is expanded beyond previously utilized sites in the Amazon rainforest to include inland boreal and temperate forests, as well as forests in coastal and island regions. These additional sites increase the available warm-scene sample size by a factor of 30 compared with using Amazon rainforests alone, allowing more accurate and statistically robust calibration. In addition, their widespread near-global distribution enables near-continuous monitoring of radiometer performance, e.g., with a temporal resolution of almost once per day. Accurate warm-end vicarious calibration enables or enhances several new capabilities for radiometer characterization. Scan-dependent calibration biases that are present at the high end of a radiometer's dynamic range can, for the first time, be reliably detected and characterized. Using this method, we are able to detect the along-scan magnetic interference and edge-of-scan biases that are present in Global Precipitation Measurement Microwave Imager (GMI) observations at warm brightness temperatures (TBs). Our techniques are able to detect and characterize very small calibration anomalies, e.g., a scan-dependent error in GMI with a peak-to-peak amplitude of 0.1 K. In general, scan-dependent performance and antenna pattern correction can be improved with better constraints at both the high and low ends of on-Earth observed TBs. Regional dependence and seasonal changes in the brightness and predictability of the forested calibration sites are dete- ted and characterized. Calibration exhibits a dependence on latitude, most significantly at water vapor channels, where tropical regions are different from middle and high latitudinal regions. Although the root cause is still under investigation, its presence suggests that using limited sites could result in undesirable latitude-dependent calibration biases. The distribution of calibration sites shifts seasonally, which results from green-up of the vegetation canopy in summer and defoliation in winter, and from snow contamination.
机译:我们开发了使用北方,温带和热带森林作为星载微波辐射计的替代校准地点的方法。扩展的站点和改进的校准技术可以检查暖场性能,以补充海洋上的寒冷景象,提供有关扫描相关偏差的信息,检测和纠正可能的校准误差,以及相互校准不同的辐射计。具体而言,本文显示了以下结果。暖场标定已扩展到亚马逊雨林以前利用不到的地点,包括内陆北方和温带森林以及沿海和岛屿地区的森林。与仅使用亚马逊雨林相比,这些额外的站点使可用的暖场样本数量增加了30倍,从而实现了更准确和统计上更可靠的校准。另外,它们的广泛的近全球分布使得能够例如每天几乎一次的时间分辨率近乎连续地监视辐射计性能。准确的热端替代校准可启用或增强用于辐射计表征的多种新功能。可以首次可靠地检测和表征辐射计动态范围高端出现的与扫描有关的校准偏差。使用这种方法,我们能够检测到在温暖的亮度温度(TBs)时,全球降水测量微波成像仪(GMI)观测中出现的沿扫描的磁干扰和扫描边缘的偏差。我们的技术能够检测和表征很小的校准异常,例如GMI中与扫描有关的误差,峰峰值幅度为0.1K。通常,可以更好地改善与扫描有关的性能和天线方向图校正观测到的结核病的高端和低端都受到限制。确定并描述了森林校准站点的亮度和可预测性的区域依赖性和季节性变化。校准表现出对纬度的依赖性,最明显的是在水汽通道上,那里的热带地区不同于中高纬度地区。尽管根本原因仍在调查中,但其存在表明使用有限的位点可能会导致不良的纬度依赖性校准偏差。校准地点的分布随季节变化,这是由于夏季植被冠层绿化和冬季落叶造成的,以及雪污染造成的。

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