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A Wireless Power Transfer System for Biomedical Implants based on an isolated Class-E DC-DC Converter with Power Regulation Capability

机译:基于具有功率调节功能的隔离E类DC-DC转换器的生物医学植入物无线功率传输系统

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In this paper, the design of a wireless power transfer system (WPT) targeting biomedical implants is considered. The novelty of the approach is to propose a co-design of the transmitter and receiver side based on the design of class-E isolated DC-DC converters. The solution, along with the simple introduction of a shunt regulator at the receiver, allows us to solve the problem of ensuring optimal efficiency in the WPT link. In conventional solutions, in order to cope with coupling factor and load variations, information from the receiver is needed, which is usually relayed back onto the transmitter by means of telemetry. With the proposed approach, a very simple minimum power point tracking (mPPT) algorithm can be used to maximize the WPT efficiency based on the information already available at the transmitter side. This reduces the complexity of the circuitry of the implant and thereby its power overhead and possibly its size, both being crucial constraints of a biomedical implant.
机译:在本文中,考虑了针对生物医学植入物的无线电力传输系统(WPT)的设计。该方法的新颖之处在于,基于E类隔离式DC-DC转换器的设计,提出了发射器和接收器侧的协同设计。该解决方案以及在接收器处简单地引入并联稳压器,使我们能够解决确保WPT链路具有最佳效率的问题。在常规解决方案中,为了应对耦合因子和负载变化,需要来自接收器的信息,通常通过遥测将其中继回发送器。利用所提出的方法,基于发射机端已经可用的信息,可以使用非常简单的最小功率点跟踪(mPPT)算法来最大化WPT效率。这降低了植入物的电路的复杂性,从而降低了其功率开销以及可能的尺寸,这两者都是生物医学植入物的关键约束。

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