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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A Real-Time Electrically Controlled Active Matching Circuit Utilizing Genetic Algorithms for Wireless Power Transfer to Biomedical Implants
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A Real-Time Electrically Controlled Active Matching Circuit Utilizing Genetic Algorithms for Wireless Power Transfer to Biomedical Implants

机译:利用遗传算法的无线功率实时传输到生物医学植入物的实时电控有源匹配电路

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摘要

This paper discusses the feasibility of a real-time active matching circuit (MC) for wireless power transfer applications, especially for biomedical systems. One prototype of low-cost real-time automatic MC, utilizing a variable circuit topology, including discrete passives and p-i-n diodes, has been implemented and the principle has been verified by measurements. One genetic algorithm was introduced to optimize the design over a wide range of impedances to match. As a result of preliminary operation verification tests, the proposed real-time MC system results in improving the transfer coefficient in the range of 10–16-cm coil separation distance a maximum of 3.2 dB automatically in about 64 ms. Similar performance improvement results were observed in additional tests under misaligned conditions, as well as for nonsymmetrical Tx–Rx coil configurations further verifying the potential applicability of the proposed system to practical biomedical devices.
机译:本文讨论了实时有源匹配电路(MC)在无线功率传输应用中(尤其是在生物医学系统中)的可行性。已经实现了一种低成本实时自动MC原型,该原型利用可变电路拓扑结构,包括离散无源和p-i-n二极管,并且已通过测量验证了该原理。引入了一种遗传算法来在广泛的阻抗匹配范围内优化设计。作为初步操作验证测试的结果,提出的实时MC系统可在约64 ms内自动将10-16 cm线圈分离距离范围内的传输系数提高至3.2 dB。在不对准条件下以及在非对称Tx-Rx线圈配置下进行的其他测试中,也观察到了类似的性能改善结果,这进一步验证了该系统在实际生物医学设备中的潜在适用性。

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