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Simulation analysis of half bridge series parallel resonant converter based battery charger for photovoltaic system

机译:基于半桥串联并联谐振变换器的光伏系统充电器仿真分析

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An innovative application of half-bridge series-parallel resonant converter (HBSPRC) for photovoltaic system and secondary battery interface is explained in this paper. This converter is designed for eliminating both low and high-frequency current ripples on the battery. This will helps to maximize battery life. The switching frequency greater than that of resonance frequency is preferred for operation, because the power switches turn on at zero current and zero voltage; thus, the freewheeling diodes need not have very fast reverse-recovery characteristics. Moreover the proposed battery charger circuit has a few components. To enhance the overall efficiency of the system energy conversion loss is to be minimized and the performance of the power converters depends upon the control method adopted. In this present work, Fuzzy logic based voltage controller and PI voltage controller have been designed, modeled and simulated in MATLAB/simulink platform and results are presented.
机译:本文介绍了半桥串并联谐振变换器(HBSPRC)在光伏系统和二次电池接口中的创新应用。该转换器旨在消除电池上的低频和高频电流纹波。这将有助于最大限度地延长电池寿命。开关频率应大于谐振频率,因为电源开关在零电流和零电压下导通,因此优选。因此,续流二极管不需要具有非常快的反向恢复特性。此外,所提出的电池充电器电路具有一些组件。为了提高系统的整体效率,应将能量转换损耗降至最低,并且功率转换器的性能取决于所采用的控制方法。在本工作中,已经在MATLAB / simulink平台上设计,建模和仿真了基于模糊逻辑的电压控制器和PI电压控制器,并给出了结果。

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