高速气体超声波流量计飞行时间估计算法研究
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北京信息科技大学自动化学院北京100192

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TN911

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国家市场监管重点实验室(无损检测与评价)开放基金(SYS-NDT&E-2025-002)项目资助


Investigation of time of fly estimation algorithm for gas ultrasonic flowmeter under high speed
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School of Automation, Beijing Information Science and Technology University, Beijing 100192, China

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    摘要:

    高速气体流量计量如火炬气流量对于节能减排、提升企业经济效益具有重要意义。超声波流量计量程范围广,测量稳定,不受组分变化影响,是火炬气流量测量主流产品。目前该类产品基本为国外垄断,国产超声波流量计在高速气体测量时声波飞行时间波动较大,导致测量结果误差较大。为了寻找合适的声波飞行时间估计算法,在仪表厂家专业计量装置上采集了10~70 m/s的气体流速下的超声波信号,研究了包络拟合法、自相关法、互相关法、小波时频分析法4种信号处理方法。实验结果表明,小波时频分析法飞行时间估计效果较好,标准差小于9 μs,流速增加标准差增大,高速时还存在一定波动。通过采用求平均、最小二乘法、割线斜率算法等可以消除数据波动,提高测量精度和稳定性,为提升国产超声波流量计精度提供技术基础。

    Abstract:

    High-speed gas flow measurement, such as flare gas flow, is of great significance for energy saving and emission reduction, and for improving enterprise economic benefits. Ultrasonic flowmeter has a wide range, stable measurement, and is not affected by component changes. At present, ultrasonic flowmeter is the mainstream product of torch gas flow measurement. At present, this kind of products are basically foreign monopoly. The wave propagation time of domestic ultrasonic flowmeter fluctuates greatly in the measurement of high-speed gas, resulting in a large error of measurement results. In order to find a suitable algorithm for estimating the propagation time of sound waves, ultrasonic signals at gas flow rates ranging from 10 m/s to 70 m/s were collected from professional metering devices of instrument manufacturers. Four signal processing methods including envelope fitting method, autocorrelation method, cross-correlation method and wavelet time-frequency analysis method were studied. The experimental results show that wavelet time-frequency analysis has a good time of fly estimation effect. Standard deviation is smaller than 9 μs. But there are still fluctuations at high speeds. Averaging, least square method or secant slope method can eliminate data fluctuations and improve measurement accuracy and stability.

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郭淼,李芳,赵纪元.高速气体超声波流量计飞行时间估计算法研究[J].电子测量与仪器学报,2025,39(8):269-277

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  • 在线发布日期: 2025-11-20
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