电容器
无线电源传输
最大功率转移定理
发射机
阻抗匹配
阻抗参数
电气工程
电子工程
电阻抗
谐振器
共振感应耦合
输入阻抗
功率(物理)
工程类
计算机科学
物理
电压
电磁线圈
频道(广播)
能量转移
量子力学
工程物理
作者
Yongseok Lim,Hoyoung Tang,Seung-Ok Lim,Jongsun Park
标识
DOI:10.1109/tpel.2013.2292596
摘要
In a wireless power transfer (WPT) system via the magnetic resonant coupling, one of the most challenging design issues is to maintain a reasonable level of power transfer efficiency (PTE), even when the distance between the transmitter and the receiver changes. When the distance varies, the PTE drastically decreases due to the impedance mismatch between the resonator of the transmitter and that of the receiver. This paper presents a novel serial/parallel capacitor matrix in the transmitter, where the impedance can be automatically reconfigured to track the optimum impedance-matching point in the case of varying distances. The dynamic WPT matching system is enabled by changing the combination of serial and parallel capacitors in the capacitor matrix. An interesting observation in the proposed capacitor matrix is that the resonant frequency is not shifted, even with capacitor-matrix tuning. In order to quickly find the best capacitor combination that achieves maximum power transfer, a window-prediction-based search algorithm is also presented in this paper. The proposed resonance WPT system is implemented using a resonant frequency of 13.56 MHz, and the experimental results with 1W power transfer show that the transfer efficiency increases up to 88 % when the distance changes from 0 to 1.2 m.
科研通智能强力驱动
Strongly Powered by AbleSci AI