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A Novel Ultrasonic Method for Liquid Level Measurement Based on the Balance of Echo Energy

机译:基于回波能量平衡的超声波液位测量新方法

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摘要

This study presents a novel method for determining the liquid level from the outside of a sealed container, which is based on the balance of echo energy received by two receiving sensors. The proposed method uses one transmitting transducer and two receiving sensors that are encapsulated in a coupling plane and arranged by certain rules. The calculation and comparison of echo energy are grounded on the difference ultrasonic impedance between gas and liquid media. First, by analyzing the propagation and attenuation characteristics of ultrasonic waves in a solid, an acoustic model for calculating the echo energy is established and simulated in MATLAB. Second, the proposed method is evaluated through a series of experiments. The difference and ratio of echo energy received by two receiving sensors are calculated and compared under two different coupling conditions. Two kinds of the sensors that are arranged by different rules are selected for measuring the liquid level, and the measurement are analyzed and discussed in detail. Finally, the experimental results indicate that the proposed method can meet the proposed accuracy requirements and can effectively solve the problems caused by some poor coupling conditions.
机译:这项研究提出了一种用于确定密封容器外部液位的新颖方法,该方法基于两个接收传感器接收到的回声能量的平衡。所提出的方法使用一个发射换能器和两个接收传感器,它们被封装在一个耦合平面中并按一定的规则排列。回声能量的计算和比较基于气体和液体介质之间的超声阻抗差。首先,通过分析超声波在固体中的传播和衰减特性,建立了用于计算回波能量的声学模型,并在MATLAB中对其进行了仿真。其次,通过一系列实验对提出的方法进行了评估。在两个不同的耦合条件下,计算并比较了两个接收传感器接收到的回波能量之差和比率。选择按不同规则排列的两种传感器来测量液位,并对测量进行详细分析和讨论。最后,实验结果表明,所提出的方法可以满足提出的精度要求,并可以有效地解决由于耦合条件差而引起的问题。

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