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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >Hardware Implementation of Solar Photovoltaic System based Half Bridge Series Parallel Resonant Converter for Battery Charger
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Hardware Implementation of Solar Photovoltaic System based Half Bridge Series Parallel Resonant Converter for Battery Charger

机译:基于太阳能光伏系统的半桥串联并联谐振转换器的硬件实现

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摘要

The long established battery chargers are having many drawbacks such as prominent ripple charging current, less efficiency and bulky in size. To overcome these drawbacks of conventional battery charger, several charging circuits have been proposed and inevitability force to design a high-performance battery charger with small in size and improved efficiency. In this paper solar photovoltaic system based half-bridge series–parallel resonant converter (HBSPRC) charger is proposed for battery interface. The converter is designed to abolish low and high-frequency ripple currents and thus take full advantage of the life of secondary battery circuit. This is achieved by designing converter switches turn on at zero current and zero voltage with switching frequency greater than that of resonance frequency which leads to freewheeling diodes need not have very fast reverse-recovery characteristics. The performance of the power converters depends upon the control method adopted; in this work fuzzy logic controller is used for controlling the output voltage of HBSPRC. The fuzzy control scheme for the HBSPR converter has been designed and validated in hardware implementation of HBSPRC switching technique. From the results, it is found that the proposed battery charging system which reduces the switching loss and voltage stress across the power switches which increases the efficiency of the converter.
机译:历史悠久的电池充电器具有许多缺点,例如纹波充电电流大,效率低和体积大。为了克服常规电池充电器的这些缺点,已经提出了几种充电电路,并且不可避免地需要设计出尺寸小且效率提高的高性能电池充电器。本文提出了基于太阳能光伏系统的半桥串并联谐振变换器(HBSPRC)充电器用于电池接口。该转换器旨在消除低频和高频纹波电流,从而充分利用了二次电池电路的寿命。这是通过设计转换器开关在零电流和零电压下接通而实现的,其开关频率大于谐振频率,这导致续流二极管不需要具有非常快的反向恢复特性。功率转换器的性能取决于所采用的控制方法。在这项工作中,模糊逻辑控制器用于控制HBSPRC的输出电压。已经在HBSPRC开关技术的硬件实现中设计并验证了HBSPR转换器的模糊控制方案。从结果发现,提出的电池充电系统减少了开关损耗和功率开关两端的电压应力,从而提高了转换器的效率。

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