横向布置多继电器的广义pt对称无线电力传输系统

0 ENGINEERING, ELECTRICAL & ELECTRONIC
Chen Ding;Lei Feng;Pengde Wu;Gaofeng Wang;Yuhua Cheng
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引用次数: 0

摘要

奇偶时间(PT)对称的概念,当应用于无线电力传输(WPT)系统时,有助于防止电力传输的减少。在现有的横向布置多继电器的PT对称WPT系统研究中,仅考虑了实现PT对称所需的耦合系数的特殊情况。这种严格的特例条件增加了系统在现实中实现的复杂性和难度。本文通过将高阶哈密顿量简化为等价的二阶哈密顿量,导出了具有横向布置多继电器的pt对称系统耦合系数的一般条件。理论推导得到了实验验证。一个带有两个继电器的实验系统实例表明,与没有继电器的传统系统相比,在稳定的功率传输下,横向传输距离增加了100%。我们的工作为实现更简单的高阶pt对称系统铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generalized PT-Symmetric Wireless Power Transfer Systems With Laterally Arranged Multirelays
The concept of parity-time (PT) symmetry, when applied in wireless power transfer (WPT) systems, helps to prevent a decrease in power delivery. In existing research on PT-symmetric WPT systems with laterally arranged multirelays, employed for expanding the lateral transfer region, only a special case has been considered for the coupling coefficient required to achieve PT symmetry. This strict special case condition increases the complexity and difficulty of implementing the system in reality. In this letter, a general condition of coupling coefficient for the PT-symmetric system with laterally arranged multirelays is analytically derived, by reducing a high-order Hamiltonian to an equivalent second-order one. The theoretical derivation is experimentally verified. An experimental system example with two relays demonstrates about a 100% increase in lateral transfer distance with stable power transfer, compared to the traditional system without relays. Our work paves the way for implementation of simpler high-order PT-symmetric systems.
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