一种具有恒功率分布的无线选择频率混合补偿网络

Zixi Liu, Qi Zhu, M. Su, A. Hu
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引用次数: 2

摘要

无线电力传输(WPT)在工业和商业应用中越来越受欢迎,因为它能够跨越大的气隙输送能量,提供物理隔离,自由的空间错位等。然而,无线移动物体会引起与磁耦合器相关的系统关键参数的变化,从而影响WPT系统的功率损耗和功率吞吐量。本文提出了一种新的选择频率混合(SF-Hybrid) WPT系统,该系统在不对准位置下提供近似恒定的功率分布。四个串联并联LC子调谐分支以一种可以在不同频率下表现出电感,电容,短路或开路特性的方式连接。因此,SF-Hybrid系统可以设计成在不同频率下工作时等效于串联或并联补偿网络。如果输入电压是频率整数倍的两个或多个正弦电压的组合,则系统可以提供相对恒定的功率分布,以防止焊盘错位。理论分析表明了SF -Hybrid系统在20 kHz和60 kHz工作的可行性,并通过基于1.3 kW系统的仿真研究进一步验证了该方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Wireless Selective Frequency Hybrid Compensation Network with Constant Power Profile against Pad Misalignment
Wireless Power Transfer (WPT) becomes increasingly popular in both industrial and commercial applications due to its ability to deliver energy across a large airgap, providing physical isolation, freedom in spatial misalignment, etc. However, wirelessly movable objects can cause changes to system key parameters related to magnetic couplers, which will affect power losses and power throughput of WPT systems. This paper proposes a novel Selective-Frequency-hybrid (SF-Hybrid) WPT system that provides an approximately constant power profile under misaligned positions. Four series parallel LC sub-tuning branches are connected in a way that can exhibit inductive, capacitive, short circuiting, or open circuiting characteristics at different frequencies. Hence, the SF-Hybrid system can be designed to be equivalent to either series- or parallel-compensation networks when operating at different frequencies. If the input voltage is a combined two or multiple sinusoidal voltages at integer times of the frequencies, the system can provide a relatively constant power profile against pad misalignments. Theoretical analysis shows the feasibility of an example SF -Hybrid system operating at 20 kHz and 60 kHz, and it is further validated by a simulation study based on a 1.3 kW system.
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