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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >Simulation and Analysis of Multiphase Boost Converter with Soft-Switching for Renewable Energy Application
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Simulation and Analysis of Multiphase Boost Converter with Soft-Switching for Renewable Energy Application

机译:具有软开关功能的可再生能源多相升压转换器的仿真分析

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摘要

This paper presents the simulation design of dc/dc interleaved boost converter with zero-voltage switching (ZVS). By employin the interleaved structure, the input current stresses to switching devices were reduced and this signified to a switching conduction loss reduction. All the parameters had been calculated theoretically. The proposed converter circuit was simulated by using MATLAB/Simulink and PSpice software programmes. The converter circuit model, with specifications of output power of 200 W, input voltage range from 10~60 V, and operates at 100 kHz switching frequency was simulated to validate the designed parameters. The results showed that the main switches of the model converter circuit achieved ZVS conditions during the interleaving operation. Consequently, the switching losses in the main switching devices were reduced. Thus, the proposed converter circuit model offers advantages of input current stress and switching loss reductions. Hence, based on the designed parameters and results, the converter model can be extended for hardware implementation.
机译:本文介绍了具有零电压开关(ZVS)的DC / DC交错式升压转换器的仿真设计。通过在交错结构中采用,减小了对开关器件的输入电流应力,这意味着开关导通损耗的减小。所有参数均已从理论上计算出。拟议的转换器电路是使用MATLAB / Simulink和PSpice软件程序进行仿真的。仿真了转换器电路模型,该模型的输出功率为200 W,输入电压范围为10〜60 V,并且在100 kHz的开关频率下工作,以验证设计参数。结果表明,模型转换器电路的主开关在交错操作期间达到了ZVS条件。因此,减少了主开关装置中的开关损耗。因此,所提出的转换器电路模型具有输入电流应力和降低开关损耗的优点。因此,基于设计的参数和结果,转换器模型可以扩展为硬件实现。

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