一种应用于插入式混合动力汽车的新型电池充电器,在公用事业连接的微电网中使用背靠背转换器

R. Razi, B. Asaei, M. Nikzad
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引用次数: 13

摘要

大多数插电式混合动力汽车(PHEV)电池充电器的主要缺点是体积和重量大、功率低、充电时间长、对配电系统产生有害的谐波影响以及灵活性和可靠性不高。本文提出了一种基于B2B变换器的插电式混合动力电池充电器结构。在所提出的结构中,基于典型家庭电路配置的交流微电网通过B2B转换器连接到电网;所述直流链路用于蓄电池充电。事实上,B2B转换器可以为电网、微电网和电池之间的潮流管理提供隔离、低成本、简单可靠的连接。根据车辆的功率需求,这种拟议的结构可以在四种不同的模式下运行:从电网(G2V)或微电网(M2V)的电池充电模式,车辆到电网模式(V2G)和车辆到微电网模式(V2H)。在各种工况的仿真研究中,验证了该方案的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new battery charger for plug-in hybrid electric vehicle application using back to back converter in a utility connected micro-grid
The major drawbacks of the most battery chargers for plug-in hybrid electric vehicle (PHEV) are high volume and weight, low power, long charging time, deleterious harmonic effects on the electric utility distribution systems and low flexibility and reliability. This paper proposes a new battery charger structure for PHEV application using back to back (B2B) converter in a utility connected micro-grid. In the proposed structure, an AC micro-grid, based on the typical household circuitry configuration, is connected to the grid via a B2B converter; and the DC link is used for battery charging. In fact, the B2B converter can provide an isolated, low cost, simple and reliable connection with power-flow management between the grid, micro-grid and battery. This proposed structure, depending on the power requirement of the vehicle, can run in four different modes: battery charging mode from the grid (G2V) or micro-grid (M2V), vehicle to grid mode (V2G) and vehicle to micro-grid mode (V2H). The feasibility of the proposed scheme has been validated in the simulation study for various operating conditions.
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