Dynamic Modeling and Control of a Three-Port ZVS-PWM Three-Phase Push Pull DC-DC Converter

Lorena Lorraine Oliveira Albuquerque, Marcos Victor Dantas de Sá, Fellipe André Lucena de Oliveira, I. Soares de Freitas, R. Andersen
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引用次数: 1

Abstract

This paper proposes the mathematic model and the control of the current and voltage loops of the ZVS-PWM three-phase current-fed push-pull DC-DC converter. The converter has three ports, two bidirectional ports and one unidirectional port and can be used in various applications such as electric vehicles, battery charging system, fuel cell, isolated mini grids and micro grids. The proposed control is able to invert power flow by imposing main inductor current value and direction as well as maintaining voltage at a given port under load variations. The control structure for each case is presented, as well as the deduction of the main mathematical expressions. In order to validate the performance of the proposed control strategy, simulation results for a 500 W converter with 50V in port 1 and 200 V in port 3 and a switching frequency of 40 kHz are presented here.
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三端口ZVS-PWM三相推挽式DC-DC变换器的动态建模与控制
本文提出了ZVS-PWM三相馈流推挽式DC-DC变换器的数学模型和电流、电压回路的控制方法。该变换器具有三个端口,两个双向端口和一个单向端口,可用于电动汽车,电池充电系统,燃料电池,隔离迷你电网和微电网等各种应用。所提出的控制能够通过施加主电感电流值和方向以及在负载变化下保持给定端口的电压来反转功率流。给出了每种情况下的控制结构,并推导了主要的数学表达式。为了验证所提出的控制策略的性能,本文给出了一个端口1为50V,端口3为200v,开关频率为40khz的500w变换器的仿真结果。
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