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Liquid-Surface-Level Sensing Based on Transverse Pulse Train Technique

机译:基于横向脉冲序列技术的液面液位传感

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摘要

A novel technique of liquid-surface-level sensing using a transverse pulse train is reported. Liquid level was detected by the reflection time of pulse train propagation on vertical, straight hollow wire partially immersed in liquid using two kinds of reflections. One is the echo from the liquid surface and the other is from the end of the sensing wire in which propagation speed is influenced by the liquid. Both the signals can be detected in a single measurement. In this paper, the standard deviation of the interface echo method and the end echo method is 26 and 199 , respectively. To the best of our knowledge, the error of the interface echo method is the lowest among all acoustic-based liquid-surface-level sensors in the current market. The attenuation coefficient of the interface echo method and the end echo method in water is 0.19 and 3.77 dB/m, respectively. The combination of the end echo and the interface echo techniques and low attenuation make it suitable for long distance and highly accurate liquid-surface-level sensing.
机译:报道了一种使用横向脉冲序列的液面水平传感的新技术。液位通过脉冲串在垂直浸没在液体中的垂直的中空导线上传播的反射时间来检测,使用两种反射方式。一种是来自液体表面的回波,另一种是来自传感线的末端,其中传播速度受液体影响。两种信号都可以在一次测量中检测到。在本文中,界面回波方法和末端回波方法的标准偏差分别为26和199。据我们所知,界面回波法的误差在当前市场上所有基于声学的液位传感器中是最低的。界面回波法和末端回波法在水中的衰减系数分别为0.19和3.77 dB / m。末端回波和界面回波技术的结合以及低衰减使其适合于长距离和高精度的液面液位传感。

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