Single-Stage Bidirectional Triple Active Bridge AC-DC converter for Single Phase Grid Applications

M. A. Hernández, Damian Sal y Rosas
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引用次数: 5

Abstract

The design of a Single-Stage Three Port AC-DC converter is analyzed in this article. The structure analyzed is the Triple Active Bridge (TAB) single phase AC-DC converter which can be used for charging of Plug in Hybrid Electric Vehicles or to control the power flow in a micro-grid composed by a renewable source, a battery pack and the single phase grid. The analysis of the converter is focused in the modulation and the high frequency (HF) transformer sizing. The three winding transformer allows safety and voltage matching between the three sources. The sources are connected to the HF transformer with three active bridges which are modulated with a fixed frequency. To compensate the time-variant AC grid voltage in the HF transformer, the grid voltage is modulated with a 50% duty ratio and, the renewable DC source and the battery are modulated with a low frequency sinusoidal time-variant duty ratio. The turn ratio relationship of the HF transformer is chosen to assure inner mode modulation. Bidirectional power flow is controlled by phase shift modulation. This modulation strategy allows soft switching in all active bridges leading to higher efficiency of the converter. The simulation of a 1-KW topology confirms the advantages of the proposed methodology.
单相电网用单级双向三有源桥式交直流变换器
本文分析了一种单级三端口交流-直流变换器的设计。所分析的结构是一种可用于插电式混合动力汽车充电或控制由可再生能源、电池组和单相电网组成的微电网潮流的三相有源桥式单相交直流变换器。对变换器的分析主要集中在调制和高频变压器的尺寸上。三绕组变压器可以保证三个电源之间的安全性和电压匹配。源通过三个有源电桥连接到高频变压器,以固定频率调制。为了补偿高频变压器中时变交流电网电压,电网电压以50%占空比调制,可再生直流电源和电池以低频正弦时变占空比调制。选择高频变压器的匝比关系以保证内模调制。双向潮流由移相调制控制。这种调制策略允许在所有有源电桥中进行软开关,从而提高变换器的效率。1千瓦拓扑的仿真证实了所提出方法的优点。
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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