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Ultrasonic distance and velocity measurement using a pair of LPM signals for cross-correlation method: Improvement of Doppler-shift compensation and examination of Doppler velocity estimation

机译:使用一对LPM信号进行互相关方法的超声距离和速度测量:多普勒频移补偿的改进和多普勒速度估计的检验

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摘要

Real-time distance measurement of a moving object with high accuracy and high resolution using an ultrasonic wave is difficult due to the influence of the Doppler effect or the limit of the calculation cost of signal processing. An over-sampling signal processing method using a pair of LPM signals has been proposed for ultrasonic distance and velocity measurement of moving objects with high accuracy and high resolution. The proposed method consists of cross correlation by single-bit signal processing, high-resolution Doppler velocity estimation with wide measurement range and low-calculation-cost Doppler-shift compensation. The over-sampling cross-correlation function is obtained from cross correlation by single-bit signal processing with low calculation cost. The Doppler velocity and distance of the object are determined from the peak interval and peak form in the cross-correlation function by the proposed method of Doppler velocity estimation and Doppler-shift compensation. In this paper, the proposed method of Doppler-shift compensation is improved. Accuracy of the determined distance was improved from approximately within ±140 μm in the previous method to approximately within ±10 μm in computer simulations. Then, the proposed method of Doppler velocity estimation is evaluated. In computer simulations, accuracy of the determined Doppler velocity and distance were demonstrated within ±8.471 mm/s and ±13.87 μm. In experiments, Doppler velocities of the motorized stage could be determined within ±27.9 mm/s.
机译:由于多普勒效应的影响或信号处理的计算成本的限制,使用超声波对运动对象进行高精度,高分辨率的实时距离测量是困难的。已经提出了使用一对LPM信号的过采样信号处理方法,以高精度和高分辨率对移动物体进行超声波距离和速度测量。所提出的方法包括:通过单比特信号处理进行互相关,具有宽测量范围的高分辨率多普勒速度估计和低计算成本的多普勒频移补偿。通过单比特信号处理从互相关中获得过采样互相关函数,并且计算成本较低。通过提出的多普勒速度估计和多普勒频移补偿方法,从互相关函数中的峰间隔和峰形式确定对象的多普勒速度和距离。本文对提出的多普勒频移补偿方法进行了改进。所确定距离的准确性从先前方法中的大约±140μm范围内提高到计算机模拟中的大约±10μm范围内。然后,对提出的多普勒速度估计方法进行了评估。在计算机仿真中,确定的多普勒速度和距离的精度在±8.471 mm / s和±13.87μm之间。在实验中,电动载物台的多普勒速度可以确定在±27.9 mm / s之内。

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