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Estimation of the Energy Spectrums of Reflections in Pulse Doppler Weather Radars. Part 2. Extreme Performance

机译:脉冲多普勒天气雷达反射能量谱的估计。第2部分。极限性能

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摘要

This is the second paper in a series of papers dedicated to the peculiarities of estimation of the continuous energy spectra of random processes of different nature, which are determined by their samples at discrete moments of time. In this paper we analyze extreme performance of the reconstruction of continuous energy spectra, in particular, the ones of interperiod fluctuations of reflections from meteorological objects in pulse Doppler weather radars under the hypothetical conditions of a priori known covariance matrix of the analyzed processes. The reasons, which cause known disadvantages of classical (nonparametric) spectral estimation (SE) methods for energy spectrums shape reconstruction, are discussed. We have considered known and suggested criteria, using which the extreme performance of classical SE methods and parametric superresolution ones has been quantitatively compared. It has been demonstrated that the extreme performance of SE methods contains important but not comprehensive information. In order to choose a SE method appropriate for operation under real-world conditions, this information should be used together with information on a corresponding method's adaptive performance under a priori unknown statistical characteristics of input effects.
机译:这是一系列论文中的第二篇论文,致力于估计不同性质的随机过程的连续能谱,这些特性由它们在离散时间的采样确定。在本文中,我们分析了连续能量谱重建的极端性能,特别是在分析过程的先验已知协方差矩阵的假设条件下,脉冲多普勒天气雷达中气象对象反射的周期波动。讨论了导致能量谱形状重构的经典(非参数)谱估计(SE)方法的已知缺点的原因。我们考虑了已知和建议的标准,通过这些标准对经典SE方法和参数超分辨率方法的极端性能进行了定量比较。已经证明SE方法的极端性能包含重要但不全面的信息。为了选择适合在现实条件下运行的SE方法,应将此信息与有关在先验未知的输入效果统计特征下相应方法的自适应性能的信息一起使用。

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