一种新型正输出高增益二次型Buck-Boost变换器:分析、设计与控制

IF 0.7 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS Jordan Journal of Electrical Engineering Pub Date : 2023-01-01 DOI:10.5455/jjee.204-1670524690
M. Hosseinpour, Armineh Dastgiri
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引用次数: 0

摘要

摘要:本文提出了一种基于Zeta结构的非隔离二次型降压升压变换器,讨论了其工作原理和稳态分析。此外,本文还进行了参数设计,并在功率电路中考虑了非理想性,详细分析了所提出变换器的实际电压增益和效率。此外,通过仿真样机验证了理论分析,并将所提出的转换器与其他类似拓扑和小信号模型进行了比较。结果表明,与传统的降压-升压变换器不同,该变换器具有正输出电压和二次电压增益,高于传统的Zeta变换器。输出/输入电压端子之间具有共地特性,输入电流连续,结构简单,效率高。此外,所提出的转换器的功率开关上的电压应力小于输出电压的一半或等于输入和输出电压的总和。因此,采用低导通电阻功率开关来降低功率损耗,提高效率。最重要的是,高二次增益电压和正输出极性特征表明了该变换器相对于其他类似变换器的优势。
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A New Positive Output High Gain Quadratic Buck-Boost Converter: Analysis, Design and Control
Abstract— In this paper, a non-isolated quadratic and buck-boost converter based on the Zeta structure is proposed, and its operating principle and analysis of its steady-state is discussed. Also, the parameter design is presented, and on-idealities are considered in the power circuit to analyze - in detail - the real voltage gain and efficiency of the proposed converter. Moreover, a simulation prototype is implemented to validate the theoretical analysis, and a comparison of the proposed converter with other similar topologies and small-signal models is conducted. The results show that - unlike the classic buck-boost converters - the proposed converter has a positive output voltage and a quadratic voltage gain that is higher than the traditional Zeta converters. Also, it has advantages such as common ground characteristics between output/input voltage terminals, continuous input current, simple structure and high efficiency. Additionally, the voltage stresses across the power switches of the proposed converter are less than half of the output voltage or equal to the sum of the input and output voltages. Therefore, the low on-resistance power switches are employed to reduce power losses and improve efficiency. On top of that, the high quadratic voltage gain and positive output polarity features present the superiority of the proposed converter against other similar converters.
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0.20
自引率
14.30%
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