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An Effective Sandwiched Wireless Power Transfer System for Charging Implantable Cardiac Pacemaker

机译:为可植入式心脏起搏器充电的有效夹层无线电源传输系统

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This paper presents a new effective sandwiched wireless power transfer (WPT) system, which is adopted to recharge the battery of a micro medical robotics for a cardiac pacemaker. The key of the design is to use the distinct sandwiched topology in both the transmitter and receiver coils, whose operating frequency of 160 kHz is significantly lower than the reported WPT system up to megahertz. Furthermore, the implantable receiver adopts the bilateral coil design, which can harness more power within a limited size. Meanwhile, with the sandwiched transmitting coils, the proposed design achieves the high feasibility and flexibility of the controllable distance for different kinds of micro medical robotics in patients. As a result, the proposed system can provide the power as high as 5 W and the transmission efficiency up to 88%. Finally, the corresponding theoretical analysis, simulation, and experimentation are carried out to prove the validity of the proposed sandwiched medical WPT system for the implantable device in the patient body.
机译:本文提出了一种新的有效的夹心式无线电力传输(WPT)系统,该系统可用于为心脏起搏器的微型医疗机器人充电。设计的关键是在发射器线圈和接收器线圈中都使用独特的夹层拓扑结构,其160 kHz的工作频率大大低于报道的高达兆赫兹的WPT系统。此外,植入式接收器采用双边线圈设计,可以在有限的尺寸内利用更多的功率。同时,通过夹在中间的发射线圈,该设计实现了针对患者的各种微型医疗机器人的可控距离的高度可行性和灵活性。结果,提出的系统可以提供高达5 W的功率,传输效率高达88%。最后,进行了相应的理论分析,仿真和实验,以证明所提出的三明治式医疗WPT系统在患者体内的可植入设备的有效性。

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