不使用铁氧体的无线输电系统的耦合独立运行

Nattapong Hatchavanich, S. Naetiladdanon, A. Sangswang, M. Konghirun
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引用次数: 2

摘要

无线功率传输系统的功率传输效率和输出功率主要受一次线圈和二次线圈之间磁耦合的影响。本文提出了一种恒流串联补偿WPT系统。基于分岔准则kcri和Lcri,采用分岔零相角(ZPA)频率作为工作频率。所提出的系统即使在耦合变化下也能保持完全补偿,并且没有铁氧体。工作频率下的电流和电压增益可以通过一次电流和电压估计出来。锁相环电路用于跟踪由于线圈位置变化而产生的相应的ZPA频率。实验结果表明,在1 kw的输出功率下,效率可达96%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling Independent Operation in Wireless Power Transfer System without Ferrite Usage
The power transfer efficiency and output power of a wireless power transfer (WPT) system are mainly affected by magnetic coupling between the primary and secondary coils. This paper presents a constant-current series-series compensated WPT system. Based on the bifurcation criteria, kcri and Lcri, the splitting zero phase angle (ZPA) frequencies is adopted as the operating frequency. The proposed system remains fully compensated even under coupling variations, and without ferrite. The current and voltage gains at the operating frequency can be estimated through the primary current and voltage. A phase-locked loop circuit is used to track the corresponding ZPA frequency due to the coil positioning variations. Experimental results have shown that the 1-kW of output power with the satisfied efficiency of 96%.
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