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A Novel Mat-Based System for Position-Varying Wireless Power Transfer to Biomedical Implants

机译:一种新型的基于垫的系统,用于改变位置的无线功率转移到生物医学植入物

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Wireless power transfer via magnetically resonant coupling is a new technology to deliver power over a relatively long distance. Here, we present a mat-based design to wirelessly power moving targets based on this technology. Our design is specifically applied to transcutaneously power medical implants within free-moving laboratory animals. Our system comprises a driver coil array, a hexagonally packed transmitter mat, a receiver coil, and a load coil, and generates a nearly flat magnetic distribution over a defined area to produce an approximately constant power output independent of the location of the receiver coil. This paper also describes a novel power receiver coil design of the same shape as the exterior of the implant, allowing for maximum magnetic coupling, eliminating the space restrictions due to the coil within the implant, and matching the resonant frequencies of the implant and the transmitter coil. Our new transmitter and receiver designs significantly reduce the size of a biomedical implant and may provide a lifetime power supply to implanted circuits without the need for an internal battery. Our designs are also useful in various other applications involving moving targets, such as part of a robot or a vehicle.
机译:通过磁谐振耦合进行无线电力传输是一项新技术,可以在相对较长的距离内传输功率。在这里,我们提出一种基于垫子的设计,以基于该技术为移动目标无线供电。我们的设计专门用于在自由移动的实验动物体内经皮供电的医疗植入物。我们的系统包括一个驱动器线圈阵列,一个六角形堆积的发射器垫,一个接收器线圈和一个负载线圈,并在定义的区域内产生几乎平坦的磁场分布,以产生与接收器线圈的位置无关的近似恒定的功率输出。本文还介绍了一种新颖的功率接收器线圈设计,其形状与植入物的外部形状相同,可以实现最大的磁耦合,消除了由于植入物内的线圈引起的空间限制,并使植入物和发射器的谐振频率匹配线圈。我们新的发射器和接收器设计大大减少了生物医学植入物的尺寸,并且可以为植入电路提供终生电源,而无需内部电池。我们的设计还可用于涉及移动目标的各种其他应用,例如机器人或车辆的一部分。

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