一种非侵入式超声波流量测量系统

S. Mileiko, Oktay Cetinkaya, A. Yakovlev, Domenico Balsamo
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引用次数: 2

摘要

由于超声波技术提供的高可靠性和高效率,它已经成为水流测量的最佳解决方案。然而,现有的应用通常需要将超声波传感器嵌入管道中,即侵入式的,这大大增加了初始部署和维护成本。考虑到就业人数,每户一个,水表的设计必须使消费者能够在没有任何熟练工人的情况下部署和维护它们。因此,本文提出了一种基于delta飞行时间$(\ delta ToF)$的非侵入式传感器系统,用于即插即用超声波水流测量。在介绍了测量理论和我们提出的设计之后,我们通过一个由闭环多管布局组成的专用测试平台,实验评估了三种不同的ΔToF计算方法在内存和计算需求方面的性能。结果帮助我们确定了所使用平台的最佳$\Delta ToF$方法,然后用于选择即使在最恶劣的部署条件(管道材料,直径)下也可操作的最佳传感器和外壳设置。与侵入式水表相比,所提出的系统达到了足够的精度$(\pm 5.7%)$,因此提供了在家庭层面取代传统侵入式水表方法的可能性。
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A Non-Intrusive Ultrasonic Sensor System for Water Flow Rate Measurement
Ultrasonic technologies have established themselves as optimal solutions for water flow rate measurement thanks to the high reliability and efficiency they offer. However, the existing applications often require ultrasonic sensors to be embedded in pipes, i.e., intrusive, which significantly increases initial deployment and maintenance costs. Considering the volume of employment, one to each house, the water meters have to be designed in a way that the consumers can deploy and maintain them without any skilled labourer. Hence, this paper proposes a delta time-of-flight $(\Delta ToF)$ -based non-intrusive sensor system for plug-and-play ultrasonic water flow rate metering. After introducing the measurement theory and our proposed design, we experimentally evaluated the performance of three different ΔToF calculation methods in terms of memory and computation requirements through a dedicated testbed consisting of a closed-loop multi-pipe layout. The results helped us to determine the optimal $\Delta ToF$ method for the employed platform, which is then used to select the best sensor and housing setting that is operable even under the worst deployment conditions (pipe material, diameter). Compared to its intrusive counterparts, the proposed system achieved a sufficient level of precision $(\pm 5.7\%)$ and hence provided the possibility of replacing the conventional methods of intrusive water metering at the household level.
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