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Modeling and analysis of a hybrid PV/Second-Life battery topology based fast DC-charging systems for electric vehicles

机译:基于混合动力光伏/二次电池拓扑的电动汽车快速直流充电系统的建模与分析

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Integration of vehicle charging infrastructures into the existing tram networks has gained a strong interest to tackle the lack of the charging infrastructures for Electric Vehicles (EVs) and Plug-in Hybrid Electric Vehicles (PHEVs). This article proposes a hybrid PV/Second-Life (SL) battery system that cannot only be used as a fast DC charging system for EVs or PHEVs, but also as an energy-storage system for tram network towards more green mobility. In this paper, the proposed hybrid PV/Second-Life (SL) battery system is designed and investigated in detail. The dynamic models of the PV and SL battery are developed and analyzed by using Matlab/Simulink. To efficiently integrate the proposed system into the tram network, advanced multiport interleaved power-converter (MIPC) and its control strategy are developed. Moreover, the simulation results are shown in this article to verify the dynamic performance of the proposed topology in different operating modes.
机译:将车辆充电基础设施集成到现有的电车网络中引起了人们的浓厚兴趣,以解决电动汽车(EV)和插电式混合动力电动汽车(PHEV)的充电基础设施不足的问题。本文提出了一种混合式光伏/第二生命(SL)电池系统,该系统不仅可以用作EV或PHEV的快速DC充电系统,而且还可以用作有轨电车网络的能量存储系统,以实现更高的绿色机动性。在本文中,对拟议的PV / Second-Life(SL)混合电池系统进行了设计和详细研究。使用Matlab / Simulink开发并分析了PV和SL电池的动态模型。为了将建议的系统有效地集成到电车网络中,开发了先进的多端口交错式电源转换器(MIPC)及其控制策略。此外,本文显示了仿真结果,以验证所提出的拓扑在不同操作模式下的动态性能。

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