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Integration of electric vehicle charging system into distribution network

机译:将电动汽车充电系统集成到配电网络中

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Transportation electrification is one of the most promising ways to limit the CO2 emission from the transportation sector so as to avoid catastrophic climate changes in the future. However, a large-scale integration of electric vehicles will introduce new challenges to electric power systems operation, especially at distribution network level. This paper aims to analyze possible impacts of large-scale electric vehicle charging system on the distribution network, propose corresponding control methods for impact mitigation, and investigate potential benefits of system performance improvement. In this paper, simulation model development of electric vehicle charging system is described firstly. After that simulation studies for both steady-state and dynamic performance analysis is introduced respectively. Simulation results show that with properly designed control strategies, the impact of large-scale charging system on power grid can be mitigated effectively; furthermore, distribution network can also benefit from electric vehicles due to the improved controllability of active and reactive power.
机译:运输电气化是最有希望的途径,以限制运输部门的CO 2 排放,以免未来灾难性的气候变化。然而,电动车辆的大规模集成将对电力系统操作引入新的挑战,特别是在分配网络水平。本文旨在分析大规模电动车充电系统对配电网络的可能影响,提出了相应的控制方法,用于影响系统性能改善的潜在益处。本文首先描述了电动车充电系统的仿真模型开发。之后分别介绍了稳态和动态性能分析的仿真研究。仿真结果表明,采用适当设计的控制策略,可以有效地减轻大规模充电系统对电网的影响;此外,由于主动和无功功率的可控性改善,分配网络也可以受益于电动车辆。

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