面向电网辅助服务的电动汽车快速充电器并联有源滤波的无缝集成

IF 3.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Ahmed Elottri;Ali Sharida;Lakhdar Mzouz;Ahmed Hafaifa;Ahmed Lakhdar Kouzou;Sertac Bayhan;Haitham Abu-Rub
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引用次数: 0

摘要

本文提出了一种新的控制策略,将并联有源电源滤波器(SAPF)功能集成到电动汽车充电器中作为辅助服务。该方法采用双向滑模控制(BD-SMC)技术,通过有效降低谐波和提高电网稳定性来提高电能质量。BD-SMC设计用于满足充电要求,包括恒流和恒压充电模式,除了在需要时充当SAPF。该方法旨在解决现代电力系统中的两个关键挑战:减轻非线性负载引入的谐波,并通过电动汽车电池的储能能力提高电网的稳定性。该系统实现了电网和电动汽车电池之间的双向能量流动,允许电池同时充当负载和存储单元。通过硬件实验验证了该系统在各种场景下的有效性,包括稳态、暂态、正常和异常电网电压状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seamless Integration of Shunt Active Power Filtering in Fast EV Chargers for Grid Ancillary Services
This paper presents a novel control strategy for integrating shunt active power filter (SAPF) functionality as an ancillary service in electric vehicle (EV) chargers. The proposed approach employs a bi-directional sliding mode control (BD-SMC) technique to enhance power quality by effectively mitigating harmonics and improving grid stability. The BD-SMC is designed to fulfill the charging requirements including constant current and constant voltage charging modes, in addition to acting as a SAPF when needed. This approach aims to address two critical challenges in modern power systems: mitigating the harmonics introduced by the non-linear loads and enhancing grid stability through the energy storage capabilities of EV batteries. The proposed system enables bi-directional energy flow between the grid and EV batteries, allowing for the batteries to act as both load and storage units. The proposed system is validated through hardware experiments under various scenarios, including steady-state, transient, normal, and abnormal grid voltage condition.
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来源期刊
CiteScore
8.60
自引率
0.00%
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