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Wireless Energy Supply to Aircraft Structural Health Monitoring Nodes Using Ultrasonic Lamb Waves

机译:使用超声波兰姆波向飞机结构健康监测节点提供无线能量

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This article is based on research done during the authora€?s PhD at Cardiff University, UK. A prototype of a novel wireless energy transmission system aimed at the use with wireless aircraft structural health monitoring (SHM) sensor nodes is described. The system uses ultrasonic guided plate waves (Lamb waves) to transmit energy along an aluminium plate, similar to those used in aircraft structures. Three types of piezoelectric transducers generating and receiving the ultrasonic vibration were compared. The Smart Material MFC M8528-P1 was found to achieve the best performance, allowing the transmission of 17 mW across a 54 cm distance, while being driven with a 20 V signal. Laser vibrometer imaging and LISA software simulation of the Lamb wave propagation in the experimental plate were also performed. Based on these, ideas for a further development of the system were proposed.
机译:本文基于作者在英国卡迪夫大学博士学位期间所做的研究。描述了旨在与无线飞行器结构健康监测(SHM)传感器节点一起使用的新型无线能量传输系统的原型。该系统使用超声波引导的板波(兰姆波)沿铝板传输能量,类似于飞机结构中使用的能量。比较了产生和接收超声振动的三种压电换能器。发现智能材料MFC M8528-P1具有最佳性能,在以20 V信号驱动的同时,可以在54厘米的距离内传输17 mW的功率。还对Lamb波在实验板上的传播进行了激光振动计成像和LISA软件仿真。在此基础上,提出了进一步开发该系统的想法。

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