Analysis of AC link topologies in non-isolated DC/DC triple active bridge converter for current stress minimization

Osama M. Hebala, A. Aboushady, K. Ahmed
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引用次数: 3

Abstract

This paper presents analysis of the non-isolated DC/DC triple active bridge (TAB) converter under various purely inductor-based AC link topologies. The objective of the analysis is to find the topology that incorporates the least value of the AC link inductors which leads to reduced converter footprint in addition to minimum internal current stresses. Modelling of the TAB under each of the different topologies is presented in per unit expressions of power transfer and reactive power assuming fundamental harmonic analysis. The power expressions are used to calculate the inductor values necessary to achieve same rated power transfer of Dual Active Bridge (DAB) converter for the sake of standardizing comparison. On this basis, the topology requiring the least value of interface inductors, hence lowest footprint, is identified. Furthermore, based on phase shift control, particle swarm optimization (PSO) is used to calculate optimal phase shift ratios in each of the proposed topologies to minimize reactive power loss (hence current stress). The topology with minimum stresses is therefore identified and the results are substantiated using a Matlab-Simulink model to verify the theoretical analysis.
基于电流应力最小化的非隔离DC/DC三有源桥变换器交流链路拓扑分析
本文分析了各种基于纯电感的交流链路拓扑下的非隔离DC/DC三有源桥(TAB)变换器。分析的目的是找到包含交流链路电感最小值的拓扑结构,从而减少转换器的占地面积以及最小的内部电流应力。在每一种不同的拓扑下,TAB的建模是在电力传输和无功功率的单位表达式中提出的,假设基本谐波分析。功率表达式用于计算实现双有源桥式(DAB)变换器相同额定功率传输所需的电感值,以便进行标准化比较。在此基础上,确定了需要最小接口电感值的拓扑结构,从而确定了最小的占用空间。此外,基于相移控制,粒子群优化(PSO)用于计算每个拓扑结构的最优相移比,以最小化无功功率损耗(因此电流应力)。因此,确定了具有最小应力的拓扑结构,并使用Matlab-Simulink模型验证了理论分析的结果。
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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