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基于多参考波的多路径超声气体流量计。

Multipath ultrasonic gas flow-meter based on multiple reference waves.

作者信息

Zhou Hongliang, Ji Tao, Wang Ruichen, Ge Xiaocheng, Tang Xiaoyu, Tang Shizhen

机构信息

State Key Laboratory of Industrial Control Technology, College of Control Science and Engineering, Zhejiang University, Hangzhou 310027, China.

State Key Laboratory of Industrial Control Technology, College of Control Science and Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

Ultrasonics. 2018 Jan;82:145-152. doi: 10.1016/j.ultras.2017.07.010. Epub 2017 Jul 18.

Abstract

Several technologies can be used in ultrasonic gas flow-meters, such as transit-time, Doppler, cross-correlation and etc. In applications, the approach based on measuring transit-time has demonstrated its advantages and become more popular. Among those techniques which can be applied to determine time-of-flight (TOF) of ultrasonic waves, including threshold detection, cross correlation algorithm and other digital signal processing algorithms, cross correlation algorithm has more advantages when the received ultrasonic signal is severely disturbed by the noise. However, the reference wave for cross correlation computation has great influence on the precise measurement of TOF. In the applications of the multipath flow-meters, selection of the reference wave becomes even more complicated. Based on the analysis of the impact factors that will introduce noise and waveform distortion of ultrasonic waves, an averaging method is proposed to determine the reference wave in this paper. In the multipath ultrasonic gas flow-meter, the analysis of each path of ultrasound needs its own reference wave. In case study, a six-path ultrasonic gas flow-meter has been designed and tested with air flow through the pipeline. The results demonstrate that the flow rate accuracy and the repeatability of the TOF are significantly improved by using averaging reference wave, compared with that using random reference wave.

摘要

超声气体流量计可采用多种技术,如渡越时间法、多普勒法、互相关法等。在实际应用中,基于测量渡越时间的方法已展现出其优势并变得更为常用。在可用于确定超声波飞行时间(TOF)的技术中,包括阈值检测、互相关算法和其他数字信号处理算法,当接收到的超声信号受到噪声严重干扰时,互相关算法具有更多优势。然而,用于互相关计算的参考波对TOF的精确测量有很大影响。在多声道流量计的应用中,参考波的选择变得更加复杂。基于对会引入超声波噪声和波形失真的影响因素的分析,本文提出了一种确定参考波的平均方法。在多声道超声气体流量计中,对每条超声路径的分析都需要其自己的参考波。在案例研究中,设计了一种六路超声气体流量计,并对通过管道的空气流进行了测试。结果表明,与使用随机参考波相比,使用平均参考波可显著提高流量测量精度和TOF的重复性。

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