基于 Coat 电路的四次方升压-Zeta 转换器,适用于高电压增益应用

Ahmed Mahmood Ali, Turki K. Hassan
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引用次数: 0

摘要

本文为太阳能和燃料电池系统提出了一种具有高电压增益的直流-直流升压转换器。该转换器通过一个高频变压器将一个带有涂覆电路基本单元的泽塔转换器和一个二次升压转换器结合在一起。这两个转换器的输出串联在一起,以提升组合式 DC-DC 转换器的输出电压。拟议的转换器不仅能获得更高的电压增益,还能降低半导体器件的电压应力。因此,器件的传导电阻更低。此外,电路还能使转换器各部分的输出保持与组合前的转换器相同的特性,从而确保每个转换器的已知优势得以保持。拟议的拓扑结构只有一个开关,因此元件数量较少。使用 PLECS 程序对 240 瓦、30 伏输入电压和 100 千赫频率进行了仿真,从而证实了拟议转换器的理论分析。
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Quadratic-Boost-Zeta Converter Based on Coat Circuit for High Voltage Gain Applications
This paper proposes a DC-DC step-up converter with a high voltage gain for solar and fuel cell systems. This converter combines a Zeta converter with one basic cell of the coated circuit and a Quadratic-Boost converter by a high-frequency transformer. The outputs of these two converters are connected in a series to boost the output voltage of the combined DC-DC converter. The proposed converter not only can achieve higher voltage gain but also acquire lower voltage stress on the semiconductor devices. Therefore, the devices with lower conduction resistances. Moreover, the circuit is made so that the outputs of each part of the converter keep the same properties as those of the converter that came before the combination, ensuring that each converter's known benefits are maintained. The proposed topology has one switch, which keeps the number of components low. The simulation of 240-watt, input voltage 30-volt, and 100kHz using the PLECS program is obtained to confirm the theoretical analysis of the proposed converter.
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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