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Height and Relative Velocity of Pedestrians Estimation Based on Radar Micro-Doppler Signatures

机译:基于雷达微多普勒签证的行人估计的高度和相对速度

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Radar micro-Doppler of human motion can provide signatures for target recognition. It is very difficult to extract motion parameters from radar echo of walking human because of its complexity. This paper presents a method for estimating the relative velocity and height of human walking. The relative velocity is defined as the average walking velocity normalized by the height of the human. In this method, the m-D spectrum of real data is extracted from linear frequency modulation signal first. Then we simulate the radar echo of different parameters and extract the m-D spectrums simulated. A priori knowledge is obtained by performing pulse compression on the signal to improve the accuracy of the simulation. At last, the correlation is compared to find the parameters corresponding to the m-D spectrum of real data, where the frequency component of foot is considered to be the main component and is separated and used to compare the correlation. Simulation results show that this method can accurately estimate the height and relative velocity parameters of pedestrians and is not sensitive to noise.
机译:人动运动的雷达微多普勒可以为目标识别提供签名。由于其复杂性,从走路的雷达回声提取运动参数非常困难。本文介绍了一种估计人行道的相对速度和高度的方法。相对速度被定义为由人的高度标准化的平均行走速度。在该方法中,首先从线性频率调制信号中提取实际数据的M-D频谱。然后我们模拟不同参数的雷达回波,并提取模拟的M-D频谱。通过对信号执行脉冲压缩来获得先验知识以提高模拟的准确性。最后,比较相关性以找到与实际数据的M-D频谱对应的参数,其中脚的频率分量被认为是主要部件,并且用于比较相关性并用于比较相关性。仿真结果表明,该方法可以准确地估计行人的高度和相对速度参数,对噪声不敏感。

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