首页> 外文会议>2016 IEEE 2nd Annual Southern Power Electronics Conference >A control scheme combining state-of-charge balancing and voltage/current regulation for a distributed battery system based on fly-back converter
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A control scheme combining state-of-charge balancing and voltage/current regulation for a distributed battery system based on fly-back converter

机译:基于回扫转换器的分布式电池系统的充电状态平衡与电压/电流调节相结合的控制方案

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摘要

This paper presents a control scheme combining SoC balancing and voltage/current regulation for a distributed battery system based on fly-back converters. In discharging operation, the proposed control scheme consists of two control loops. The first control loop is designed to regulate all battery terminal voltages to be identical, thus SoC imbalance issue is solved from the root. The other control loop is designed to regulate the output voltage. These two control objectives are combined into one system. In charging operation, the flyback converters are operated in discontinuous conduction mode (DCM). As a result, the charging power of each battery is identical. Therefore, SoC imbalance issue is avoided. The analysis of the control scheme and prototype validation based on flyback converters are provided to illustrate and demonstrate the proposed control scheme.
机译:本文提出了一种基于反激式转换器的分布式电池系统的SoC平衡和电压/电流调节相结合的控制方案。在放电操作中,所提出的控制方案包括两个控制回路。第一个控制环路旨在将所有电池端子电压调节为相同,从而从根本上解决了SoC不平衡问题。另一个控制回路用于调节输出电压。这两个控制目标组合成一个系统。在充电操作中,反激转换器以不连续导通模式(DCM)工作。结果,每个电池的充电功率是相同的。因此,避免了SoC不平衡问题。提供了基于反激转换器的控制方案分析和原型验证,以说明和演示所提出的控制方案。

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