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Similarity Judgment-Based Double-Threshold Method for Time-of-Flight Determination in an Ultrasonic Gas Flowmeter

机译:超声波气体流量计中基于相似度判断的双阈值飞行时间测定方法

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摘要

Double-threshold method is a typical and simple time-of-flight (TOF) measurement method for time-difference-based ultrasonic flowmeter. Some improvements have been proposed to suppress the cycle-skip phenomenon in double-threshold method. However, there are still some application limitations when the waveform is distorted caused by the environment change, especially the temperature change. This paper proposes a similarity judgment-based double-threshold method to deal with the cycle-skip problem. In this method, time values of three consecutive positive zero-crossing points after the feature point are acquired and five consecutive cycles after the first obtained time are saved. The TOF is automatically selected from three acquired time values according to an adaptive determination function which bases on the similarity between signals from two adjacent measurements. These operations guarantee that the obtained TOF locates on the same positive zero-crossing point in each measurement. The proposed method was validated by both numerical and experimental tests. Comparison between the proposed method and other double-threshold methods shows that the proposed method successfully eliminates cycle-skip phenomenon under different working conditions.
机译:双阈值方法是基于时差的超声流量计的一种典型且简单的飞行时间(TOF)测量方法。已经提出了一些改进措施来抑制双阈值方法中的循环跳跃现象。但是,由于环境变化(尤其是温度变化)导致波形失真时,仍然存在一些应用限制。提出了一种基于相似度判断的双阈值方法来解决周期跳跃问题。在该方法中,获取特征点之后的三个连续的正零交叉点的时间值,并保存第一个获得的时间之后的五个连续的周期。根据一个自适应确定函数,TOF是从三个获取的时间值中自动选择的,该函数基于来自两个相邻测量的信号之间的相似性。这些操作可确保获得的TOF在每次测量中位于相同的正零交叉点上。通过数值和实验测试验证了该方法的有效性。将该方法与其他双阈值方法进行比较表明,该方法成功消除了不同工况下的循环跳变现象。

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