采用电容分压技术的新型非隔离高降压三相交错DC-DC变换器

A. Babu, Raghavendiran, Barnabas Paul Glady, G. Rajan
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引用次数: 8

摘要

为了减小主开关的电压应力,提出了一种新型的非隔离高降压DC-DC变换器。采用新的电容分压方法将输入能量存储在输入电容中。三个输入电容跨输入电源连接,存储和释放能量到三个具有高降压比且不小于占空比的交错降压变换器。输入电容分压的方法减小了开关的电压应力,便于选择低额定开关。低额定值开关提供低导通状态电阻,从而降低了开关的导通损耗。交错脉宽调制的应用可以消除输入纹波电流,从而减小输入和输出电流纹波。给出了三相交错变换器的分析、工作原理和仿真结果。在开关损耗、导通损耗、纹波电流和电压增益等仿真参数下对该方法进行了验证。在MATLAB/Simulink环境下对所提出的变换器进行了仿真。仿真结果与样机的实验结果吻合,样机的输入电压为29.1伏,输出电压为1.091伏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel non-isolated high step-down three phase interleaved DC-DC converter with capacitor voltage division techniques
The novel non-isolated high step-down DC-DC converter is proposed to reduce the voltage stress of main switch. The new capacitive voltage division method is used to store the input energy in input capacitors. The three input capacitors are connected across the input supply to store and release the energy to three interleaved buck converter with high step down ratio without less duty ratio. The input capacitor voltage division method will reduce the voltage stress of switch, hence easy to select the low rating switch. The low rating switch offer low on state resistance, which result in reduced conduction loss of switch. The application of interleaved PWM provides input ripple current cancellation as a result input and output current ripple get reduced. The three phase interleaved converter proposes analysis, principle of working and simulation results are presented. The proposed new method is examined under various simulation parameters are such as switching loss, conduction loss, current ripple, and voltage gain. The proposed converter simulation was done using MATLAB/Simulink environment. The presented simulation result is validated by experimental result of prototype proposed converter with 29.1 volt input 1.091 volt output.
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