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Micro-Doppler Signatures of Dynamic Humans From Around The Corner Radar

机译:来自拐角雷达的动态人类的微多普勒签名

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Recent studies have demonstrated the possibility of sensing dynamic targets around the corners with no direct signal in line-of-sight with respect to the radar. These works have mostly focused on the detection of targets around the corner on the basis of multipath scattering from lateral walls. However, strong specular multipath returns are only obtained for highly conductive walls or at high carrier frequencies. There is minimal research effort into using the existing indoor radar hardware at much lower carrier frequencies for around the corner sensing of targets. In this paper, we have performed a detailed experimental analysis, including both simulations and measurements, of the effect of wall parameters and carrier frequency on the around the corner micro-Doppler signatures of dynamic humans. Our results demonstrate that in real world scenarios where walls are lossy, target micro-Dopplers are weak and distorted by multipath scattering at high carrier frequencies and are sensed only very near the radar. At lower carrier frequencies, the targets are sensed at greater distances and the micro-Dopplers are not significantly distorted by multipath since the signals mostly travel along the direct path through the wall.
机译:最近的研究表明,在雷达视线范围内没有直接信号的情况下,可以感应到拐角处的动态目标。这些工作主要集中在根据来自侧壁的多径散射来检测拐角处的目标。但是,仅对于高导电壁或在高载波频率下才能获得强的镜面多径返回。使用极低载波频率的现有室内雷达硬件进行目标的拐角检测时,需要进行最少的研究工作。在本文中,我们进行了详细的实验分析,包括模拟和测量,其中包括壁参数和载频对动态人的拐角微多普勒信号特征的影响。我们的结果表明,在现实世界中,墙壁是有损耗的场景,目标微多普勒仪很弱,并且在高载波频率下会受到多径散射的影响而失真,并且只能在雷达附近被感知到。在较低的载波频率下,可以在更远的距离上感测到目标,并且多普勒信号不会因多径而明显失真,因为信号大多沿着穿过壁的直接路径传播。

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