一种具有合适电压应力的升压DC-DC变换器新型无变压器结构

Farzad Mohammadzadeh Shahir, M. Gheisarnejad, M. Khooban
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引用次数: 4

摘要

本文提出了一种基于电压提升技术的升压dc-dc变换器的新结构。该变换器的主要优点是不需要变压器,结构简单,输入电流纹波自由小,使用输入源获得高电压增益能力,对半导体施加合适的电压应力,输出电容小。在此基础上,分析了该变换器在连续导通模式(CCM)和断续导通模式(DCM)下的工作原理及其元件的电压电流关系,并分别计算了每种工作模式下的电压增益。此外,还分析了开关的临界电感、电流应力、无源元件值和效率的计算。此外,本文还从CCM的理想电压增益、有源和无源器件数量、半导体的最大电压应力以及输入电流纹波情况等方面与其他研究过的升压变换器进行了比较。利用实验室样机的实验结果验证了理论概念的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Transformer-Less Structure for a Boost DC-DC Converter with Suitable Voltage Stress
In this paper, a new structure is proposed for a boost dc–dc converter based on the voltage-lift (VL) technique. The main advantages of the proposed converter are its lack of transformer, simple structure, free and low input current ripple, high voltage gain capability by using an input source, suitable voltage stress on semiconductors and lower output capacitance. Herein, the analysis of the proposed converter operating and its elements voltage and current relations in continuous conduction mode (CCM) and discontinuous conduction mode (DCM) are presented, and the voltage gain of each operating mode is individually calculated. Additionally, the critical inductance, current stress of switches, calculation of passive components’ values and efficiency are analyzed. In addition, the proposed converter is compared with other studied boost converters in terms of ideal voltage gain in the CCM and the number of active and passive components, maximum voltage stress on semiconductors, and situation of input current ripples. The correctness of the theoretical concepts is examined from the experimental results using the laboratory prototype.
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