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Simulation-based analysis of the error caused by non-uniform beam filling and signal fluctuation in rainfall rate measurement with a spaceborne radar

机译:基于模拟的误差分析与太空雷达的降雨率测量中的不均匀光束填充和信号波动引起的误差

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The Tropical Rainfall Measuring Mission is a United States-Japan joint project for rain measurement using a spaceborne rain radar. The authors investigate the rainfall-rate error caused by the effect of non-uniform beam filling on the radar reflectivity and the surface reference technique simulation which employs rain data measured by a ground-based radar. Complete 3D rain data generated from a radar-based volume scan are used, and these 3D rain data are assumed to be true data. To estimate the mean value of the rain echo power, it is essential to take an average of fluctuating radar signals; to estimate that value correctly, a large number of samples is needed. However, the number of averaging samples is limited because the measurement time at spatially fixed points is limited by the continuous movement of the satellite. Thus, instrument-measured quantities always have some errors. This study takes into consideration the error caused by the limited number of averaging samples.
机译:热带降雨衡量任务是美国 - 日本雨量测量的联合项目,使用星载雨雷达进行雨量测量。作者研究了由非均匀光束填充对雷达反射率的影响引起的降雨速率误差和采用由地基雷达测量的雨量数据的表面参考技术模拟。使用从基于雷达的体积扫描生成的完整3D雨量数据,并假设这些3D雨数据是真实数据。为了估计雨回波力的平均值,必须采用平均波动的雷达信号;要估计正确的值,需要大量样本。然而,平均样本的数量受到限制,因为空间固定点处的测量时间受到卫星的连续运动的限制。因此,仪器测量的数量总是有一些错误。本研究考虑了由有限数量的平均样本引起的误差。

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