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Analysis and Validation of Ultrasonic Probes in Liquid Level Monitoring Systems

机译:液位监测系统超声波探头的分析与验证

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摘要

Selecting and designing the optimum ultrasonic probe is vital for ultrasonic measurements and experiments. The amplitude of the emitted ultrasonic wave excitation signal as well as the diameter and the natural frequency of the probe seriously affect the validity of the probe results. In this paper, we analyze the significance of the key parameters of the ultrasonic probe theoretically. Further, an external fixed-point liquid level monitoring system was assembled according to the principle of ultrasonic reflection and transmission. On this experimental platform, we study the key parameters of the ultrasonic probe that affect the system evaluation through a simulation and experiment, and select the optimal sensor parameters for this experiment. The evaluations show that under the experimental conditions where the tested container is made of aluminum alloy and its wall thickness is 3 mm, the best results are obtained when the diameter of the ultrasonic sensor is 15 mm, the amplitude of the emitted excitation signal is ±15 V, and the frequency is 1 MHz. The results’ average deviation is less than ±0.22 V. The evaluations are consistent with the simulation results. This research can effectively monitor the liquid in the closed, ultra-thin-walled container, and can realize non-contact measurement. It provides an effective basis for the parameters selection and design of the ultrasonic probe in the ultrasonic-based experiments and tests.
机译:选择和设计最佳超声波探头对于超声波测量和实验至关重要。发射的超声波激励信号的幅度以及探针的直径和自然频率严重影响了探针结果的有效性。在本文中,我们从理论上分析了超声波探头的关键参数的重要性。此外,根据超声反射和变速器的原理组装外部定点液位监测系统。在这个实验平台上,我们研究了超声波探头的关键参数,通过模拟和实验来影响系统评估,并为该实验选择最佳传感器参数。评估表明,在测试容器由铝合金制成的实验条件下,其壁厚为3mm,当超声波传感器的直径为15mm时,获得了最佳结果,发出的激励信号的幅度为± 15 V,频率为1 MHz。结果的平均偏差小于±0.22 V.评估与模拟结果一致。该研究可以有效地监控封闭式超薄容器中的液体,并可实现非接触式测量。它为超声波实验和测试中的超声波探头提供了有效的基础。

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