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Ultrasonic Distance Measurement Method With Crosstalk Rejection at High Measurement Rate

机译:具有高串扰率的超声波测距方法

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This paper introduces a computationally intensive method for measuring distance at high measurement rates using chaotic pulse-position (CPPM) signals and single-bit signal processing in a single ultrasound sensor system. To prevent crosstalk from other ultrasonic sensor systems, a chaotic system is used, and the ultrasonic pulses are transmitted as a pulse sequence generated by CPPM. After receiving the ultrasound signal, the single-bit signal was generated by a fast Fourier transform threshold, which also functions as an environmental noise filter. Single-bit signal processing has been adopted to reduce the computational load when cross correlating the transmitted and received signals for time-of-flight calculations. Single-bit signal processing has more than 100 times memory saving effect in this paper. Additionally, as the signal-to-noise ratio increases, extension of the maximum measurable distance in the ultrasonic distance sensor system is expected. The simulation shows the crosstalk rejection performance of the proposed method, and the experimental results confirm the improvement of the measurement speed by the proposed method.
机译:本文介绍了一种计算密集型方法,该方法在单个超声传感器系统中使用混沌脉冲位置(CPPM)信号和单比特信号处理来以高测量速率测量距离。为了防止来自其他超声传感器系统的串扰,使用了混沌系统,并且超声脉冲作为CPPM生成的脉冲序列进行传输。接收超声信号后,通过快速傅立叶变换阈值生成单位信号,该阈值还用作环境噪声滤波器。当对发送和接收的信号进行飞行时间计算互相关时,已采用单位信号处理来减少计算负荷。本文中的单比特信号处理具有100倍以上的内存节省效果。另外,随着信噪比的增加,预计超声波距离传感器系统中最大可测量距离的延长。仿真结果表明了所提方法的串扰抑制性能,实验结果证实了所提方法对测量速度的提高。

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