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In-depth study of the application of solid-state transformer in design of high-power electric vehicle charging stations

机译:固态变压器在高功率电动车充电站设计中的应用深入研究

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摘要

Solid-state transformers (SST) will play an important role in future electric power distribution. The SST usually used for traction and transportation systems. However, it can be employed for other applications. For example, electric vehicles (EVs) are confronting the increased demand now, and the service provider must expand the infrastructures such as the high-power EV charging stations in urban areas. One solution for designing a high-power charging station is the SST-based charging stations, which can be connected to the distribution network. This study proposes an SST-based EV charging station, which is connected to the 20 kV catenary without any low-frequency transformer and provides the necessary power for connected EVs without affecting the grid power quality. The proposed EV charging station has high flexibility such that it can be integrated with distributed generation. It also provides vehicle-to-grid, grid-to-vehicle and sun-to-vehicle features. Besides, it can inject reactive power to the grid based on its free capacity. This study also proposes an advance virtual flux predictive power controller to improve the immunity of this structure against voltage harmonics. Exact simulations have been done for a three-phase 20 kV/600 V/360 kVA station with different scenarios. Results verify the performance of this infrastructure.
机译:固态变压器(SST)将在未来的电力分布中发挥重要作用。 SST通常用于牵引和运输系统。但是,它可以用于其他应用程序。例如,电动车(EVS)现在面临着增加的需求,服务提供商必须扩展城市地区高功率EV充电站等基础设施。设计高功率充电站的一个解决方案是基于SST的充电站,可以连接到分配网络。本研究提出了一种基于SST的EV充电站,其连接到20 kV脉冲网,而没有任何低频变压器,并且为连接的EV提供了必要的电力而不影响电网电力质量。所提出的EV充电站具有很高的灵活性,使得它可以与分布生成集成。它还提供了车辆桥网,车辆与车辆和阳光到车辆功能。此外,它可以基于自由容量对网格注入电气的反应电力。本研究还提出了预先虚拟助焊剂预测电力控制器,以提高该结构免受电压谐波的影响。采用不同场景的三相20 kV / 600 V / 360 kVA站完成了精确的模拟。结果验证了此基础架构的性能。

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