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Design and characterization of an ultrasonic lamb-wave power delivery system

机译:超声波兰姆波功率传递系统的设计与表征

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In this paper, a novel design for an ultrasonic power transmission system designed for use in aircraft structural monitoring systems is described. The prototype system uses ultrasonic Lamb waves to carry energy along plates, such as those used in aircraft structures, and commercially available piezoelectric patch transducers as the transmitter and receiver. This sets it apart from other acoustic power transmission systems reported to date. The optimum configuration transmitted 12.7 mW of power across a distance of 54 cm in a 1.5-mm-thick aluminum plate, while being driven by a 20-Vpp, 35-kHz sinusoidal electric signal. This is in the same order of magnitude as the power required by the wireless sensors nodes of a structural health monitoring system currently being developed by Cardiff University and its partners. Thus, the power transmission system can be considered a viable component of the power source combination considered for the sensor nodes, which will also include vibration and thermal energy harvesting. The paper describes the design and optimization of the transmission and reception circuits with the use of inductive compensation. The use of laser vibrometry to characterize the transducers and to understand the signal propagation between them is also reported.
机译:在本文中,描述了一种用于飞机结构监测系统的超声功率传输系统的新颖设计。原型系统使用超声波兰姆波将能量沿着板(例如飞机结构中使用的板)传输,并使用市售的压电贴片换能器作为发送器和接收器。这使其与迄今为止报道的其他声功率传输系统区分开来。最佳配置在1.5mm厚的铝板上跨54cm的距离传输12.7mW的功率,同时由20Vpp,35kHz正弦电信号驱动。这与加的夫大学及其合作伙伴目前正在开发的结构健康监测系统的无线传感器节点所需的功率在同一数量级。因此,动力传输系统可以认为是传感器节点考虑的动力源组合的可行组成部分,其中还包括振动和热能收集。本文介绍了使用电感补偿的发送和接收电路的设计和优化。还报道了使用激光振动测定法来表征换能器并了解它们之间的信号传播。

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