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Role of reactive power (STATCOM) in the planning of distribution network with higher EV charging level

机译:无功功率(STATCOM)在较高EV充电水平的配电网规划中的作用

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摘要

In recent years, new trends in electrification of the transport sector have been a major concern for distribution grid operators. New types of flexible, uncontrollable loads, such as EV, influence the reliability of distribution networks. This work is related to the distribution system planning framework, with a particular focus on uncoordinated flexible EV loads. The main focus is the enhancement of the hosting capacity of EVs on distribution networks, while maintaining power quality (especially voltage magnitude and voltage unbalance), which is ultimately a pre-requisite for increasing prosumer engagement. Several EV charging scenarios, in the context of UK/Irish distribution networks with increased penetration of EV prosumers are considered. The results show that reactive power compensation through STATCOM, in the context of EV integration, can provide continuous voltage support and thereby facilitate 90% penetration of network customer EV connections at a normal EV charging rate (3.68kW). If fast charging (up to 11kW) is employed, <30% of network EV customers can be accommodated due to bottlenecks presented by the substation transformer loading.
机译:近年来,运输部门电气化的新趋势已成为配电网运营商的主要关切。新型的灵活,不可控制的负载(例如EV)会影响配电网络的可靠性。这项工作与配电系统规划框架有关,特别关注于未协调的灵活电动汽车负荷。主要重点是增强电动汽车在配电网络上的承载能力,同时保持电能质量(尤其是电压幅度和电压不平衡),这最终是增加消费者参与度的先决条件。在英国/爱尔兰的分销网络中,考虑了几种电动汽车充电方案,并且电动汽车生产者的渗透率不断提高。结果表明,在EV集成的情况下,通过STATCOM进行的无功功率补偿可以提供持续的电压支持,从而以正常的EV充电速率(3.68kW)促进90%的网络客户EV连接渗透。如果采用快速充电(最高11kW),由于变电站变压器负载所带来的瓶颈,将无法满足30%的网络EV客户的需求。

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