Analysis & Simulation of Different LLC Converter Topologies

Abdel Hadi Daher, Nezihe Yıldıran
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Abstract

There is an expanding trend in electric vehicle (EV) technologies because of finite fuel sourcesand environmental concerns. One of the essential barriers in EVs commercialization is the charging ofbatteries. The inductor-inductor-capacitor (LLC) resonant converter appears the most appealing design dueto its advantages, such as small electromagnetic interference, obtaining high-power density, ability to bedesigned at very high switching frequencies, operation for wide input and output voltage range with narrowswitching frequency variation, and high efficiency. This study compares different topologies of LLCresonant converter that can be adapted as battery charger of electric vehicle. The schematics of topologies,detailed design calculation of the parameters, simulation results of topologies to show the circuitperformance are presented, respectively. The simulation model is realized for whole examined topologieswith a proportional integral controller to obtain constant output voltage using MATLAB. LLC resonantcircuit is designed for the input voltage range of 305-345V, output voltage range of 36-58V, and outputpower of 700W. Analytical and simulation results are included in this study to illustrate the performancedifferences among the presented topologies of LLC resonant converter in terms of structure, efficiency, anddynamic response at sudden load changes.
不同LLC转换器拓扑结构的分析与仿真
由于有限的燃料来源和环境问题,电动汽车(EV)技术有扩大的趋势。电动汽车商业化的主要障碍之一是电池充电。电感-电感-电容(LLC)谐振变换器具有电磁干扰小、功率密度高、可以在很高的开关频率下设计、开关频率变化小、输入输出电压范围宽、效率高等优点,是目前最具吸引力的变换器设计。本研究比较了可作为电动汽车电池充电器的LLCresonant变换器的不同拓扑结构。给出了各拓扑的原理图、各参数的详细设计计算以及各拓扑的仿真结果。利用MATLAB实现了用比例积分控制器对整个检测拓扑的仿真模型,以获得恒定的输出电压。设计的LLC谐振电路的输入电压范围为305-345V,输出电压范围为36-58V,输出功率为700W。本研究包括分析和仿真结果,以说明所提出的LLC谐振变换器拓扑在结构、效率和负载突然变化时的动态响应方面的性能差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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