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Adaptive Beamspace Processing for Phased-Array Weather Radars

机译:相控阵天气雷达的自适应波束空间处理

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The next generation of weather radars, which may also support other missions, is likely to be based on phased arrays that will utilize simultaneous receive beams to achieve the required update times. Some of the disadvantages of using simultaneous receive beams, such as higher two-way antenna radiation pattern sidelobes, can be mitigated by using adaptive beamforming. A majority of the existing adaptive beamforming algorithms are designed for point targets, and direct application to distributed scatterers (e.g., hydrometeors) can lead to significantly biased estimates of key radar variables. This paper presents an adaptive beamspace processing algorithm specifically designed for weather-surveillance radar applications. Through both simulated and real data, it is shown that the proposed adaptive beamspace processing algorithm can produce accurate and calibrated estimates of radar variables while also automatically rejecting interference signals.
机译:下一代天气雷达也可能支持其他任务,它很可能基于相控阵,相控阵将利用同时接收波束来实现所需的更新时间。通过使用自适应波束成形,可以缓解使用同时接收波束的某些缺点,例如更高的双向天线辐射方向图旁瓣。现有的大多数自适应波束成形算法大多数都是针对点目标设计的,直接应用于分布式散射体(例如水凝物)会导致关键雷达变量的估计值出现明显偏差。本文提出了一种专门为天气监视雷达应用而设计的自适应波束空间处理算法。通过仿真和真实数据,结果表明,所提出的自适应波束空间处理算法可以生成准确且经过校准的雷达变量估计值,同时还可以自动抑制干扰信号。

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