A Study on Applying Interleaved Switching Pattern on a Double-Input/Single-Output Zeta Converter

Mahdi Ghavaminejad, E. Afjei, M. Meghdadi
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引用次数: 1

Abstract

This paper presents behavior of a double-input/single-output (DISO) zeta converter by applying interleaved switching pattern in continuous conduction mode (CCM). This converter is implemented by combining two H-bridge cells and a conventional zeta converter, based on DISO buck-boost topologies. The converter can be utilized in either step-down or step-up modes. By adopting the interleaved switching pattern, a delay time is generated between gate pulses of H-bridge cells transistors. As a result, the converter output voltage can be varied by changing the delay time while the pulse duty cycles are kept constant. Moreover, the output voltage ripple, which is depended on the duty cycles is also kept constant. According to the chosen duty cycles and delay time, the converter can operate either in step-up or step-down modes. The output voltage ripple value of the proposed converter is less than that of both buck-boost converters, and the output voltage polarity is positive as opposed to DISO buck-boost converter. As the input filter inductor is placed in a parallel branch, adding several numbers of H-bridge cells in series as the input stage of zeta converter is very easy and does not need any changes in the formation of the converter components, which is a great advantage of utilizing zeta converter in comparison to cuk and SEPIC. Steady state analyses and calculations are done, and the proposed converter is simulated in both step-up and step-down modes.
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交错开关模式在双输入单输出Zeta变换器中的应用研究
本文介绍了在连续导通模式(CCM)下采用交错开关模式的双输入单输出(DISO) zeta变换器的特性。该转换器由两个h桥单元和一个传统的zeta转换器组成,基于DISO buck-boost拓扑结构。转换器可用于降压或升压模式。采用交错开关方式,在h桥晶体管栅极脉冲之间产生延时时间。因此,在脉冲占空比保持不变的情况下,可以通过改变延迟时间来改变变换器的输出电压。此外,输出电压纹波与占空比的关系也保持恒定。根据所选择的占空比和延迟时间,变换器可以在升压或降压模式下工作。该变换器的输出电压纹波值小于两种buck-boost变换器的输出电压纹波值,并且与DISO buck-boost变换器相反,输出电压极性为正。由于输入滤波器电感放置在并联支路上,因此在zeta变换器的输入级上串联若干h桥单元是非常容易的,并且不需要改变变换器元件的构成,这是使用zeta变换器相比cuk和SEPIC的一大优势。进行了稳态分析和计算,并在升压和降压两种模式下对该变换器进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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