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Wideband Radar Micro-Doppler Applications

机译:宽带雷达微多普勒应用

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Wideband radar provides a significant improvement over traditional narrowband radars for micro-Doppler analysis because the high bandwidth can be used to separate many of the signals in range, allowing a simpler decomposition of the micro-Doppler signals. Recent wideband radar work has focused on micro-Doppler, but there is a point where the narrowband approach used to analyze the micro-Doppler signals breaks down. The effect is shown to be independent of frequency, but the error relative to the bandwidth is shown to be inversely proportional to the frequency and proportional to the velocity of the subject. This error can create a smearing effect in the observed Doppler if it is not corrected, leading to reduced signal-to-noise and the appearance of more diffuse targets in Doppler space. In range-space, wideband data can also break the subject into several range bins, affecting the observed signal to noise ratio. The possible applications of wideband micro-Doppler radar are also shown, including the separation of arm movement from human motion which implies that the arms are not encumbered.
机译:宽带雷达相对于用于微多普勒分析的传统窄带雷达提供了显着改进,因为高带宽可用于分离范围内的许多信号,从而使微多普勒信号的分解更为简单。最近的宽带雷达工作主要集中在微多普勒上,但是有一点可以用来分析微多普勒信号的窄带方法崩溃了。示出了该效应与频率无关,但是示出了相对于带宽的误差与频率成反比并且与对象的速度成正比。如果不纠正,此错误会在观察到的多普勒中产生拖尾效应,从而导致信噪比降低,并在多普勒空间中出现更多的散射目标。在距离空间中,宽带数据还可以将对象分成几个距离仓,从而影响观察到的信噪比。还显示了宽带微多普勒雷达的可能应用,包括将手臂运动与人体运动分开,这意味着手臂不会受到束缚。

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