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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Chirp excitation of ultrasonic probes and algorithm for filtering transit times in high-rangeability gas flow metering
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Chirp excitation of ultrasonic probes and algorithm for filtering transit times in high-rangeability gas flow metering

机译:高量程气体流量计中超声波探头的线性调频激发和滤波通过时间的算法

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摘要

The signal processing used in an ultrasonic high-rangeability gas flow meter using times of flight is presented. The flow meter under discussion uses a combination of continuous wave and chirp signals to measure at low flow velocities, below 20 m/s, and chirp signals alone to measure high flow velocities, above 20 m/s. Because of the need for a pulse compression technique in the signal waveform design the technique of pulse compression and the choice of signal waveforms are discussed. The advantages and disadvantages of amplitude weighting vis-a-vis frequency domain manipulations of the waveforms are also discussed. To eliminate spurious times of flight, a special filtering technique is used, based on assessing the gradient of ascendingly ordered time series of time-of-flight measurements. A summary of user experience with high-rangeability gas flow meters in use on different offshore platforms and in refineries is given. Long-term tests that examined the accuracy of the high-rangeability flow meter are also described.
机译:介绍了使用飞行时间的超声波高量程气体流量计中使用的信号处理。所讨论的流量计使用连续波和线性调频信号的组合来测量低于20 m / s的低流速,而单独使用线性调频信号来测量高于20 m / s的高流速。由于信号波形设计中需要脉冲压缩技术,因此讨论了脉冲压缩技术和信号波形的选择。还讨论了波形相对于频域操作的幅度加权的优缺点。为了消除杂散的飞行时间,在评估飞行时间测量的升序时间序列的梯度的基础上,使用了一种特殊的滤波技术。总结了在不同海上平台和炼油厂使用高量程气体流量计的用户体验。还描述了检查高量程流量计精度的长期测试。

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