IEEE Trans Ultrason Ferroelectr Freq Control. 2022 Jul;69(7):2381-2389. doi: 10.1109/TUFFC.2022.3179276. Epub 2022 Jun 30.
Unlike electromagnetic waves, acoustic vibrations waves can be used to transfer power directly through metal structures without being shielded. In this article, a novel design of a self-detachable acoustic wireless power transfer system that can be used to transfer power through the thickness of a steel plate is presented, which does not require the use of any couplant. Electro-permanent-magnets (EPMs) were used to provide magnetic clamping force along the perimeter of the receiver transducer disk to enhance coupling to the steel plate, while the transmitter transducer was bonded to the other side of the plate. The EPM clamping force can be switched ON/ OFF electronically with low power consumption. Unlike past work reliant on additional bonding materials or liquid/gel couplant, this approach enables the receiver to be attached and detached at will, opening up the possibility of a simple charging pad for unmanned aerial vehicles (UAVs) or other consumer devices for harsh environment applications. Power transfer efficiency up to 63% was achieved, and the effect of varying steel plate thickness and clamping force was also investigated. A finite element model was also constructed to understand the vibration mode shape.
与电磁波不同,声波振动可以在不屏蔽的情况下直接通过金属结构传输能量。本文提出了一种新颖的自分离式声无线功率传输系统设计,可用于通过钢板厚度传输功率,无需使用任何耦合剂。电永磁体 (EPM) 用于在接收器换能器盘的周边提供磁夹紧力,以增强与钢板的耦合,而发射器换能器则粘贴在钢板的另一侧。EPM 夹紧力可以通过低功耗电子方式开关 ON/OFF。与过去依赖额外的粘合材料或液体/凝胶耦合剂的工作不同,这种方法使接收器能够随意连接和断开,为无人机 (UAV) 或其他用于恶劣环境应用的消费设备提供了简单的充电垫的可能性。实现了高达 63%的功率传输效率,并研究了变化的钢板厚度和夹紧力的影响。还构建了有限元模型来理解振动模态形状。