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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Grid-friendly integration of electric vehicle fast charging station based on multiterminal DC link
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Grid-friendly integration of electric vehicle fast charging station based on multiterminal DC link

机译:基于多端直流链路的电动汽车快速充电站的网格友好集成

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摘要

The success of the e-mobility will inevitably be linked to the network hosting capacity of new electrical vehicle chargers. A massive deployment of electrical vehicles will considerably stress the current LV distribution grids due to the load increase. Moreover, the integration of electrical vehicle fast charging stations may produce severe grid congestions if adequate countermeasures are not applied. This scenario allows to explore new ways of network operation to enhance the integration of the electrical vehicles avoiding additional network reinforcements. This paper proposes a new topology of electrical vehicle fast charging station based on a multiterminal DC-link arrangement but using the same power electronic devices of the conventional ones. Each terminal is connected to different LV feeders in such a way that the electrical vehicle charge can be shared between the upstream secondary substations. In addition, the multiterminal DC link is able to contribute to the LV voltage regulation by adequate reactive power injections. The proposal has been experimentally validated on a scaled-down system which mimics the main properties of an actual LV distribution system. The obtained results show that the proposed solution can be considered an e-mobility enabler due to the minimization of the charging impact and the maximization of the use of the current assets.
机译:电动汽车的成功将不可避免地与新型电动汽车充电器的网络托管能力相关。电动汽车的大规模部署将由于负载增加而给当前的低压配电网带来巨大压力。此外,如果不采取适当的对策,电动汽车快速充电站的集成可能会导致严重的电网拥堵。此方案允许探索网络操作的新方法,以增强电动车辆的集成性,从而避免额外的网络增强。本文提出了一种新的电动汽车快速充电站拓扑结构,该拓扑结构基于多端子直流链路布置,但使用了与传统设备相同的电力电子设备。每个端子均连接至不同的低压馈线,以使电动车辆电荷可在上游次级变电站之间共享。此外,多端子直流链路还可以通过注入足够的无功功率来帮助调节低压电压。该提案已在模拟实际LV配电系统主要特性的按比例缩小的系统上进行了实验验证。获得的结果表明,由于充电影响的最小化和流动资产使用的最大化,所提出的解决方案可以被视为电动汽车的推动者。

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