采用所开发的开关电感和开关电容结构的高电压增益升压变换器

Mohammad Hamidi, M. Hamzeh, Morteza Naderlooei, Mohsen Zargarzadeh, E. Afjei
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引用次数: 2

摘要

本文提出了一种新的升压变换器拓扑结构,以解决与传统升压电路相比具有高电压增益的兼容性问题,该拓扑结构非常适合可再生能源和直流应用。与类似的升压变换器配置相比,所提出的拓扑结构具有更少的半导体元件。此外,输出级被移除,因为开关电感是通过用两个电容器替换两个二极管来开发的。此外,对称电路使设计和分析更简单。在电流传导模式下完成了工作模式和稳态分析。利用MATLAB Simulink和Script对变换器进行仿真,得到了DC-DC变换器的典型波形。
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A High Voltage Gain Boost Converter with the Reduced Number of Switches Using the developed Switched Inductor and Capacitor Structure
This paper proposes a new boost converter topology to address the compatibility problem with a high voltage gain compared to the conventional boost circuit, which is highly proper for renewable energy resources and DC applications. In contrast to similar boost converter configurations, the proposed topology has fewer semiconductor components. Furthermore, the output stage is removed, as the switched inductor is developed by replacing two diodes with two capacitors. Moreover, the symmetrical circuit makes design and analyses less complicated. The operation modes and the steady-state analysis are accomplished in the current conduction mode. The converter simulation is carried out with MATLAB Simulink and Script so as to obtain the typical waveforms of the DC-DC converter.
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