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Study on bidirectional-charger for electric vehicle applied to power dispatching in smart grid

机译:电动汽车双向充电器在智能电网电力调度中的研究

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摘要

It will be one of the most important content to take the electric vehicle batteries as distributed energy storage units which can accept the power dispatching, and now bidirectional charger is the key power electronic device that has been used to connect power grid to the electric vehicle battery. In this paper, a two-stage bidirectional power converter made up of T-type neutral point clamped (NPC) three-phase three-level (TL) AC/DC and dual active bridge (DAB) DC/DC is studied, And the direct power control strategy is adopted to accept power dispatching from power grid. With high reliability, efficiency and high power quality as the goal, a novel space vector modulation (SVPWM) is proposed to avoid the terminal voltage distortion of bridge legs, and the series-parallel-connection DAB converter is presented to further improve efficiency. Finally, experimental results verify the feasibility of circuit topology and control strategy.
机译:将电动汽车电池作为可以接受电力分配的分布式储能单元,将是最重要的内容之一,而双向充电器已成为将电网连接到电动汽车电池的关键电力电子设备。本文研究了一种由T型中性点钳位(NPC)三相三相(TL)AC / DC和双有源桥(DAB)DC / DC组成的两级双向功率转换器,并且采用直接功率控制策略来接受来自电网的功率分配。以高可靠性,高效率和高电能质量为目标,提出一种新颖的空间矢量调制(SVPWM)以避免桥臂的端电压失真,并提出了串并联DAB转换器以进一步提高效率。最后,实验结果验证了电路拓扑和控制策略的可行性。

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