Design and analysis of a DC-DC converter for EVs battery charger

Shunxiang Li, K. Nam
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引用次数: 4

Abstract

A detailed analysis and circuit implementation of a ZVS high output current and high power density converter with an active clamping circuit, ripple current reduced filter, and transformer isolation are presented. To reduce to voltage stress of the main switch in the converter an active clamping circuit is employed to provide ZVS for both main switch and axillary switch and the clamping capacitor is also used to recycle the energy stored in the leakage inductor and magnetizing inductor of both of the two isolation transformers. Four filter inductors are adopted in the circuit to reduce the current ripple of the output side and the usage of transformer provides galvanic isolation for security. Two transformer which is series connected in primary side and parallel in secondary side are used to double the turn ratio of the transformer in order to ensure the switch operating under a more stable switching duty ratio. In this paper the operating principle is analyzed in detail and the design consideration is also presented. The output-voltage feedback controller based on state-space averaging technique under small-signal assumption is built. Simulation Model and a prototype circuit especially used in electrical vehicle battery charging power system based on the proposed converter are built to verify the analysis of the proposed converter.
一种用于电动汽车电池充电器的DC-DC变换器设计与分析
介绍了一种具有有源箝位电路、纹波电流减小滤波器和变压器隔离的ZVS高输出电流高功率密度变换器的详细分析和电路实现。为了减小变换器中主开关的电压应力,采用有源箝位电路为主开关和腋开关提供零电压电压,并利用箝位电容回收存储在两个隔离变压器的漏电电感和充磁电感中的能量。电路中采用了四个滤波电感来减小输出侧的纹波电流,变压器的使用为安全提供了电流隔离。采用双变压器一次侧串联、二次侧并联的方式,使变压器的匝比增加一倍,以保证开关在更稳定的开关占空比下工作。本文对其工作原理进行了详细分析,并提出了设计注意事项。在小信号假设下,建立了基于状态空间平均技术的输出电压反馈控制器。建立了基于该变换器的电动汽车电池充电电源系统的仿真模型和原型电路,验证了该变换器的分析结果。
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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