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Multi-PRI Signal Processing for the Terminal Doppler Weather Radar. Part I: Clutter Filtering

机译:终端多普勒天气雷达的多pRI信号处理。第一部分:杂波过滤

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摘要

Multiple pulse repetition interval (multi-PRI) transmission is part of an adaptive signal transmission and processing algorithm being developed to aggressively combat range–velocity ambiguity in weather radars. In the past, operational use of multi-PRI pulse trains has been hampered due to the difficulty in clutter filtering. This paper presents finite impulse response clutter filter designs for multi-PRI signals with excellent magnitude and phase responses. These filters provide strong suppression for use on low-elevation scans and yield low biases of velocity estimates so that accurate velocity dealiasing is possible. Specifically, the filters are designed for use in the Terminal Doppler Weather Radar (TDWR) and are shown to meet base data bias requirements equivalent to the Federal Aviation Administration’s specifications for the current TDWR clutter filters. Also an adaptive filter selection algorithm is proposed that bases its decision on clutter power estimated during an initial long-PRI surveillance scan. Simulations show that this adaptive algorithm yields satisfactory biases for reflectivity, velocity, and spectral width. Implementation of such a scheme would enable automatic elimination of anomalous propagation signals and constant adjustment to evolving ground clutter conditions, an improvement over the current TDWR clutter filtering system.
机译:多脉冲重复间隔(multi-PRI)传输是自适应信号传输和处理算法的一部分,该算法正在开发中,以积极应对气象雷达的距离-速度模糊性。过去,由于难以进行杂波滤波,因此妨碍了多PRI脉冲序列的使用。本文提出了具有出色幅度和相位响应的多PRI信号的有限脉冲响应杂波滤波器设计。这些滤波器提供了强大的抑制能力,可用于低海拔扫描,并产生低的速度估算偏差,因此可以进行精确的速度去交叠。具体来说,这些滤波器是为在终端多普勒天气雷达(TDWR)中使用而设计的,并且显示出满足与美国联邦航空管理局当前TDWR杂波滤波器规范相同的基本数据偏差要求。还提出了一种自适应滤波器选择算法,该算法的决策基于在初始长PRI监视扫描期间估计的杂波功率。仿真表明,该自适应算法对反射率,速度和光谱宽度产生令人满意的偏差。这种方案的实施将能够自动消除异常传播信号,并不断调整以适应不断发展的地面杂波情况,这是对当前TDWR杂波滤波系统的改进。

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