电容器
电气工程
功率(物理)
电压
功率因数
拓扑(电路)
计算机科学
物理
工程类
量子力学
作者
Mengjie Qin,Wenjie Chen,Jiaxuan Niu,Qingyuan Gao,Mowei Lu,Fan Zhang,Xu Yang,Stefan M. Goetz
标识
DOI:10.1109/tie.2023.3303628
摘要
This article proposes a maximum power factor tracking (MPFT) technique for the LCC resonant converter which functions as a capacitor charging power supply. The proposed MPFT technique is achieved through variable dc-link voltage whose reference value can be adjusted in real time for the maximum power factor. By means of the proposed method, the dc-link voltage follows the output capacitor voltage to minimize the turn- off current of mosfets , thereby reducing the turn- off switching loss. Additionally, this technique reduces the circulating current, which in turn decreases the instantaneous reactive power in the resonant tank. In comparison with the conventional constant-current (CC) charging and constant-power (CP) charging strategies without MPFT, the proposed CC charging with MPFT (CC-MPFT) and CP charging with MPFT (CP-MPFT) both exhibit great efficiency improvement. In CC-MPFT, the efficiency can be improved by up to 26.84% under light load condition. In CP-MPFT, the efficiency can be increased by up to 11.63% under light load condition and 2.66% under heavy load condition.
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