Author:
Wang Weikang,Liu Yang,Zhao Jin,Yin Quan,Lv Qiaoqiang,Zhang Peng
Abstract
The interleaving technique is required for LLC resonant converters to achieve high power levels, handle higher input/output currents, and reduce output current ripple. However, the high system efficiency and the low output current ripple for the multi-phase LLC resonant converter cannot be achieved at the same time at low and medium power levels. Most methods try to keep the multi-phase LLC resonant converter in load-sharing mode regardless of the power level, which will result in low system efficiency at low and medium power levels. In this paper, an output current ripple and efficiency optimal control method with finite load distribution schemes is proposed for the multi-phase LLC resonant converter to balance the efficiency and output current ripple. The optimal control method improves the efficiency as much as possible while keeping output current ripple low. According to the calculation of output current ripple and efficiency, the optimal load distribution scheme is selected. The pulse-frequency modulation (PFM) and phase-shift modulation (PSM) hybrid control is applied to regulate the load of each phase. An analysis is provided, and a 540-W three-phase interleaved LLC resonant converter is built to verify the superiority.
Subject
Economics and Econometrics,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference28 articles.
1. Three-Phase LLC Battery Charger: Wide Regulation and Improved Light-Load Operation;Arshadi;IEEE Trans. Power Electron.,2021
2. Efficiency Improvement of Three-phase LLC Resonant Converter Using Phase Shedding;Arshadi,2017
3. Current Balancing and Phase Shedding by Split Capacitor for a Three-phase LLC Resonant Converter;Chiba,2020
4. Power Loss Estimation in LLC Synchronous Rectification Using Rectifier Current Equations;Glitz;IEEE Trans. Ind. Electron.,2020
5. Determination of Critical Thermal Operation for Small Squirrel Cage Motor;Hruska,2014
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献