一种基于伪随机序列自相关的超声测距系统

Xiaochuan Zhao, Qingsheng Luo, Baoling Han, Xiyu Li
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引用次数: 12

摘要

设计了一种基于伪随机序列自相关的超声测距系统。超声波测距系统采用模块化设计,可以准确测量超声波的传播速度和传递时间,进而计算出障碍物的距离。采用低功耗高性能的TMS320VC5509A DSP作为超声波测距系统的信号处理器。为了提高相关计算的实时性,采用了基于FFT的相关判断算法。超声波接收电路采用绝对值电路代替传统的检测电路,有效地解调了接收到的超声波的伪随机序列。提出了一种超声测距系统的误差校正算法。在干扰存在的环境下对超声测距系统进行了性能测试。实验结果表明,超声测距系统具有良好的抗干扰性能,测距误差在1.8%以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel ultrasonic ranging system based on the self-correlation of pseudo-random sequence
A novel ultrasonic ranging system based on the self-correlation of pseudo-random sequence is designed in this paper. Modular design is applied in this ultrasonic ranging system, which can measure the ultrasonic propagation velocity and transit time accurately, and then calculates the obstacle's distance. Low power consumption and high performance TMS320VC5509A DSP is used as the ultrasonic ranging system's signal processor. In order to improve the correlation calculation's real-time performance, correlation judgment algorithm based on FFT is adopted. The ultrasonic receiving circuit is improved by absolute-value circuit instead of the traditional detection circuit, which effectively demodulates the pseudo-random sequences from the received ultrasonic waves. An error correction algorithm for this ultrasonic ranging system is proposed. The ultrasonic ranging system's performance test was conducted under the interference existed environment. The experimental results demonstrate that the ultrasonic ranging system has good anti-interference performance and its ranging errors are within 1.8%.
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