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A closed loop controlled bidirectional contactless grid interface with a soft DC-link

机译:具有软直流链路的闭环控制双向非接触式网格接口

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Bidirectional contactless grid interfaces are gaining popularity as an alternative to conventional hardwired interfaces in vehicle-to-grid (V2G) and grid-to-vehicle (G2V) applications. However, such systems typically employ a large input inductor as well as a large and expensive electrolytic DC-link capacitor, which compromises the reliability of the entire system. Although, back-to-back converter (BTBC) based bidirectional contactless grid interfaces with a variable or soft DC-link have been recently proposed as an alternative, the total harmonic distortion (THD) associated with grid currents of the BTBC based system exceeds the acceptable limits set by standards. As a solution, this paper proposes a closed loop controlled bidirectional contactless interface that employs a small input inductor, a small DC-link capacitor, and a grid converter operated at low frequency, for grid integration. The feasibility of the proposed system is validated through simulations of a 1 kW simulation model.
机译:双向非接触网格界面正在获得普及作为车辆到网格(V2G)和网格到车辆(G2V)应用中的传统硬连线接口的替代方案。然而,这种系统通常采用大输入电感以及大型和昂贵的电解DC链路电容器,其损害整个系统的可靠性。尽管最近已经提出了具有可变或软直流链路的基于背对背转换器(BTBC)的双向非接触网接口作为替代方案,但与基于BTBC的系统的网格电流相关的总谐波失真(THD)超过了标准设置的可接受限制。作为解决方案,本文提出了一种闭环控制的双向非接触式接口,采用小型输入电感器,小型直流链路电容器和以低频操作的电网转换器,用于网格集成。通过1千瓦仿真模型的仿真验证了所提出的系统的可行性。

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