Single-Phase Bidirectional PEV Charger for V2G Operation with Coupled-Inductor Cuk Converter

Brajhan B. Quispe, Gerard de Melo, R. Cardim, J. Ribeiro
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引用次数: 3

Abstract

This paper presents the design of a single-phase bidirectional plug-in electric vehicle (PEV) charger for charging/discharging the vehicle’s battery. The charger operates in all quadrants of the active-reactive (P-Q) power plane, thus enabling reactive power support service to the utility grid. The proposed charger topology consists of two cascaded power stages: a full-bridge inverter and a coupled-inductor bidirectional Cuk converter. A hybrid control system is used, which consists of a set of PI controllers and Takagi-Sugeno (T-S) fuzzy controllers. This control system allows the charger to follow reference measures for active and reactive power in a smart grid environment. T-S fuzzy models are derived from the converter-inverter system for the controller’s design analysis via linear matrix inequalities (LMI). Finally, the effectiveness of the proposed control strategy for the charger through simulation results is verified.
带耦合电感Cuk变换器的V2G单相双向PEV充电器
介绍了一种单相双向插电式电动汽车(PEV)充电/放电充电器的设计。充电器在有功-无功(P-Q)功率平面的所有象限中运行,从而为公用事业电网提供无功支持服务。提出的充电器拓扑结构由两个级联功率级组成:全桥逆变器和耦合电感双向Cuk变换器。采用一种混合控制系统,由一组PI控制器和Takagi-Sugeno (T-S)模糊控制器组成。该控制系统允许充电器遵循智能电网环境中有功和无功功率的参考措施。利用线性矩阵不等式(LMI)对变换器-逆变器系统建立了T-S模糊模型,并进行了控制器的设计分析。最后,通过仿真结果验证了所提充电器控制策略的有效性。
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