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Implantable Magnetic Resonance Wireless Power Transfer System Based on 3D Flexible Coils

机译:基于3D柔性线圈的可植入磁共振无线电力传输系统

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摘要

A magnetic resonance wireless power transfer system based on flexible 3D dual-coil is proposed and implemented in this paper. Firstly, a magnetic coupling resonant circuit model based on dual-coil is established, and the analysis indicates that enlarging the coil inductance and quality factor can effectively improve the transfer efficiency and performance. The coil parametric model is created by HFSS (High Frequency Structure Simulator), the effects of structural parameters on the coil inductance and quality factor are analyzed, and the optimized coil structure parameters are determined. To achieve maximum power transfer, the coupled resonant model after impedance matching is established and simulated in HFSS, and S11 reaches −30 dB at 13.56 MHz. Considering the radiation on human tissues, the SAR (Special Absorption Rate) value is evaluated simultaneously. To confirm the validity of the proposed prototype, the efficient wireless power transfer system composed of two flexible and biocompatible coils with 10 mm radius has been verified by the experimental measurements, and measure results show that the output power is 70 mW, when the transfer distance is 6 mm, the input power is 200 mW, and the maximum transfer efficiency is 35%.
机译:基于灵活的3D双线圈的磁共振无线电力传送系统,提出并在本文中实现。首先,基于双线圈的磁耦合谐振电路模型被建立,并且该分析表明,扩大线圈的电感和品质因数可以有效地提高传输效率和性能。线圈参数模型由HFSS(高频结构仿真)创建的,在线圈的电感和品质因数的结构参数的影响进行了分析,线圈结构参数被确定的优化。为了实现最大功率传输,阻抗匹配后的耦合的谐振模型的建立和HFSS仿真,和S11到达-30dB的在13.56MHz。考虑对人体组织的辐射时,SAR(特别吸收率)的值同时进行评价。为了证实所提议的原型的有效性,用半径为10mm的两个柔性的和生物相容性的线圈构成的高效无线功率传输系统已经通过实验测量验证,和测量结果表明,输出功率为70毫瓦,当传送距离为6mm,输入功率为200毫瓦,并且最大转印效率为35%。

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