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A Coarse and Precise Fusion Algorithm for Velocity Measuring of Millimeter Wave in the Bore

机译:孔内毫米波速度测量的粗精确融合算法

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摘要

Aiming at the problems of the echo signal with low signal-to-noise ratio and the absence of some velocity segments in the velocity measurement process of millimeter wave radar in bore, a millimeter wave radar echo signal processing scheme is proposed. Based on the analysis of millimeter wave Doppler radar system structure, the respect such as frequency optimization are analyzed in detail, on the one hand optimize parameter in crude speed STFT(Short Time Fourier Transform), and to improve speed range as far as possible, on the other hand through time-frequency extrusion, combined with the interior motion frequency optimization, improve the accuracy of the wavelet pure speed. Experimental results show that the proposed velocity measurement algorithm can effectively overcome the problem of missing segments of some velocity segments in the velocity measurement of the moving body in the 40mm bore, and better reflect the changing law of velocity in the bore.
机译:针对毫米波雷达内孔雷达测速过程中信噪比低,回波信号少,速度段不存在的问题,提出了毫米波雷达回波信号处理方案。在分析毫米波多普勒雷达系统结构的基础上,详细分析了频率优化等方面,一方面优化了粗速度STFT(短时傅立叶变换)中的参数,并尽可能提高了速度范围,另一方面通过时频挤压,结合内部运动频率的优化,提高了小波纯速度的精度。实验结果表明,本文提出的速度测量算法可以有效地克服40mm孔内运动体的速度测量中某些速度段缺失的问题,更好地反映了孔内速度的变化规律。

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