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A Field Assessment of a Rain Estimation System Based on Satellite-to-Earth Microwave Links

机译:基于星地微波链路的降雨估算系统的现场评估

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This paper describes the results obtained by the application of an innovative environmental monitoring technique able to estimate rainfall intensity in real time by processing the attenuation of microwave satellite link signal measured by low cost sensors. The satellite that has been used during our work, Turksat 42 degrees E, belongs to the plethora of satellites operating for television and radio channel broadcasting. Each sensor exploits off the shelf components, is equipped with a radio frequency power-measuring unit, and provides connectivity to the server over a wide area network. A validation of the approach with a field comparison experiment at the urban scale, comprising three measurement sites equipped with such sensors, was established since autumn 2016 in the municipality of Genoa, Italy. Point-scale rainfall intensity measurements made by two calibrated tipping-bucket rain gauges constitute the reference for the comparative analysis of the microwave sensors performance. The dynamic calibration of the rain gauges was carried out by using an automatic calibration rig and the measurements have been processed with advanced algorithms to reduce counting errors. The experimental setup allowed a full characterization of the microwave signal trends as a function of different precipitation. The results showed a strong correlation between the microwave signal attenuation and the reference rainfall observations and demonstrated the possibility to retrieve ten-minute rain accumulations from the microwave links by adopting a proper electromagnetic model. The comparison between the different measuring systems is performed by computing the time series statistics and the frequency of the rain conditions for each precipitation event.
机译:本文介绍了通过应用创新的环境监测技术获得的结果,该技术能够通过处理由低成本传感器测量的微波卫星链路信号的衰减来实时估算降雨强度。在我们的工作中使用的卫星Turksat 42 E,属于为电视和无线电频道广播工作的大量卫星。每个传感器都利用现成的组件,配备有射频功率测量单元,并通过广域网提供与服务器的连接。自2016年秋季以来,已在意大利热那亚市通过城市规模的实地比较实验对该方法进行了验证,该实验由三个配备有此类传感器的测量站点组成。由两个经过校准的翻斗式雨量计进行的点尺度降雨强度测量,构成了对微波传感器性能进行比较分析的参考。雨量计的动态校准是通过使用自动校准设备进行的,并且已使用高级算法处理了测量结果以减少计数误差。实验设置允许根据不同的降水量全面表征微波信号趋势。结果表明,微波信号衰减与参考降雨观测值之间具有很强的相关性,并证明了采用适当的电磁模型可以从微波链路中检索十分钟的降雨积聚的可能性。通过计算时间序列统计数据和每个降水事件的降雨条件频率,可以对不同的测量系统进行比较。

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