一种具有强弱电网耐久性的三相电网交互双向车载充电器

Saran Chaurasiya, Bhim Singh
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引用次数: 2

摘要

本文提出了一种适用于扭曲电网和健康电网的互动式车载三相电动汽车充电器。充电系统采用三相VSC,在正向输电时工作在主动整流模式,在电网供电模式下工作在逆变模式。控制充放电通过全桥(FB) LLC变换器实现。有源功率因数校正(APFC)阶段的控制被设计为不允许在电网故障、传感单元异常和分布式发电引起的电网电压谐波、直流偏移和频率漂移的情况下在电网角度上产生任何反射。结合电池端子电压变化调节中间直流链路基准电压,实现电动汽车宽充电电压范围和开关频率范围有限的完整充电剖面软切换。为此,设计了一种协调控制,以满足电动汽车充电的大范围要求,并在整个充电曲线上实现最佳效率点跟踪。DC-DC级的控制在两个h桥上使用调频和移相来调节电动汽车电池的输入和输出功率。为此,设计并模拟了一个6.6 kW的系统,以验证所设计的充电系统在强电网和弱电网情况下所声称的效益的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Three Phase Grid Interactive Bidirectional Off-board EV Charger with Weak and Strong Grid Durability
This paper presents a grid interactive off-board three phase EV charger capable for both distorted and healthy grid scenarios. The charging system incorporates three phase VSC, working in active rectification mode during forward power transfer whereas, in grid power fed mode it works as inverter mode. The controlled charging or discharging is made through full bridge (FB) LLC converter. The control for active power factor correction (APFC) stage is designed to not allow any reflection in grid angle with the presence of harmonics, DC offsets and frequency drift in grid voltage due to grid faults, sensing unit anomalies and distributed generation. The intermediate DC link reference is regulated in conjunction with the variation in battery terminal voltage to achieve wide EV charging voltage range and soft switching over complete charging profile with limited range of switching frequency. For this, a coordinated control is designed to cater wide range of EV charging with optimum efficiency point tracking over complete charging profile. The control for DC-DC stage uses both frequency modulation and phase shift over both H-bridges to regulate power in and out from the EV battery. For this, a 6.6 kW system is designed and simulated to validate the effectiveness of the claimed benefits of the designed charging system over both strong and weak grid scenarios.
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