Design of inductively coupled power transfer systems with series-parallel compensation frameworks

Dongyu Li, H. Wen, Guanying Chu
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引用次数: 6

Abstract

This paper presents an inductively coupled power transfer (ICPT) system that can transfer energy with high efficient from primary side to secondary side with variable load from 50 to 300 Ω via electromagnetic resonant coupling and output stable voltage. Main reasons for low efficiency for wide frequency deviation have been investigated. Typical compensation structures are compared in terms of efficiency, and load range. The series-parallel compensation framework is adopted to keep both side coils work in resonant condition and output maximum voltage. A practical ICPT prototype was conducted and the performance with different compensation networks were compared experimentally. Simulation and experimental results are illustrated to show the stability and effectiveness of this inductively coupled transfer system.
带串并联补偿框架的电感耦合电力传输系统设计
本文提出了一种电感耦合功率传输系统,该系统通过电磁谐振耦合和输出稳定电压,可以在负载为50 ~ 300 Ω的情况下,将电能从一次侧高效地传递到二次侧。分析了宽频差导致效率低下的主要原因。比较了典型补偿结构的效率和负载范围。采用串并联补偿框架,使两侧线圈工作在谐振状态,输出最大电压。设计了一种实用的ICPT样机,并对不同补偿网络的性能进行了实验比较。仿真和实验结果表明了该系统的稳定性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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