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Signal processing technique for removal of NUBF induced error in spaceborne Doppler precipitation radar measurements

机译:用于去除空间传播多普勒沉淀雷达测量中NUBF诱导误差的信号处理技术

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A sampling strategy and a signal processing technique are proposed to overcome Non Uniform Beam Filling (NUBF) errors on mean Doppler velocity measurements made by spaceborne weather radars. Effects of non uniformity of rainfall within the main antenna lobe in terms on the accuracy of standard estimators are first briefly shown, so as to point out that the bias introduced by NUBF on mean Doppler velocity estimates can be greater than the standard deviation of the estimated velocity, and that it depends on the along-track distribution of reflectivity. Then the sampling strategy is described, based on an oversampling of the integrated data in the along-track direction in order to retrieve information about the reflectivity pattern at the sub-beam scale. The proposed processing technique, named Combined Frequency-Time (CFT) technique, exploits the time series of spectra at fixed range to resolve the NUBF induced bias. The results and the evaluation of performances achievable by means of CFT, were obtained by applying a 3D spaceborne Doppler radar simulator to a 3D dataset of reflectivity and mean Doppler velocity measured through the NASA/JPL airborne Doppler radar ARMAR. The radar system considered here is a nadir-looking, Ku band radar with a sufficiently wide antenna. It is shown how the error on mean Doppler velocity estimates can be reduced by means of CFT to the level predicted for such a radar system in the case of uniformly filled resolution volume (UBF).
机译:提出了一种采样策略和信号处理技术来克服由星载气象雷达制成的平均多普勒速度测量上的非均匀光束填充(NUBF)误差。首先简要展示了主要天线叶内的降雨量在主天线叶中的效果,以便指出,NUBF在平均多普勒速度估计上引入的偏差可以大于估计的标准偏差速度,并且它取决于反射率的沿轨道分布。然后基于沿轨道方向上的集成数据的过采样来描述采样策略,以便在子束尺度下检索关于反射率图案的信息。所提出的处理技术,名为频率 - 时(CFT)技术,利用固定范围的时间序列来解决NUBF引起的偏置。通过CFT通过CFT施加到通过NASA / JPL空气传播多普勒雷达臂施加到反射率的3D数据集来获得通过CFT实现的表演的结果和评价。这里考虑的雷达系统是一种Nadir-Look,Ku带雷达,具有足够宽的天线。示出了在均匀填充的分辨率(UBF)的情况下,可以通过CFT降低平均多普勒速度估计的误差如何降低到所预测的这种雷达系统的水平。

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