大型无线充电基础设施无变压器电网集成的模块化多级接口

G. Guidi, S. D'arco, J. Suul, Ryosuke Iso, J. Itoh
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引用次数: 7

摘要

提出了一种基于无线感应充电的大型电动汽车充电设施无变压器并网系统配置方案。所提出的配置依赖于模块化多电平转换器(MMC)拓扑作为充电基础设施的网格接口,其中每个单独的模块可以提供一个无线电动汽车充电器。通过允许无变压器连接和直接与中压配电网集成,这种系统拓扑结构可以显著减少电缆安装的占地面积和复杂性。对基础设施内分布不均匀的电动汽车充电时的潮流管理需求进行了分析评估。在此基础上,提出了一种控制策略,以保证MMC臂之间的水平和垂直能量平衡,以及各臂模块之间的电压平衡。时域仿真表明,该系统可以在充电车辆数量和位置不同导致的严重不平衡情况下运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modular Multilevel Interface for Transformerless Grid Integration of Large-Scale Infrastructure for Wireless Electric Vehicle Charging
This paper presents a system configuration for transformer-less grid integration of large-scale charging infrastructures for electric vehicles (EVs) with wireless inductive charging. The proposed configuration relies on a Modular Multilevel Converter (MMC) topology as the grid interface of the charging infrastructure, where one wireless EV charger can be supplied from each individual module. This system topology could provide significant reduction in footprint and complexity of cable installations by allowing for transformer-less connection and direct integration with the medium voltage distribution grid. The requirements for power flow management when charging EVs that are unevenly distributed within the infrastructure are evaluated analytically. On this basis, a control strategy is presented for ensuring horizontal and vertical energy balancing among the MMC arms, and voltage balancing among the modules of each arm. Time-domain simulations demonstrate how the system can operate with severe unbalances resulting from different number and location of charging EV s.
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