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Power flow control with bidirectional dual active bridge battery charger in low-voltage microgrids

机译:具有双向双极电桥电池充电器的功率流量控制,低压微电池充电器

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This paper describes a power conversion system that implements bidirectional power flow between the electric grid and a battery, based on a full bridge inverter associated with a dual active bridge. A method for power flow control based on the agreement between battery pack and low voltage grid requirements has been developed to allow the large penetration of both, electric vehicles (EV) and renewable microgeneration. A laboratory prototype containing all functions required to implement a vehicle-to-grid (V2G) power interface has been built. The hardware implementation is reported, including control scheme and high-frequency transformer design details. Converter key waveforms are presented to evaluate the power quality on batteries and grid, as well as its dynamic behavior. An experimental laboratory setup is described and results are shown to demonstrate the technical benefits for low-voltage (LV) microgrids, if electric vehicle charger includes a power flow control based on frequency-voltage droop concept.
机译:本文介绍了一种电力转换系统,其在电网和电池之间实现双向功率流,基于与双极主桥相关联的完整桥式逆变器。已经开发了一种基于电池组和低压电网要求之间的协议的电力控制方法,以允许电动车辆(EV)和可再生微生物的大渗透。建立了一个实验室原型,其中构建了实现车辆到网格(V2G)电源接口所需的所有功能。报告了硬件实现,包括控制方案和高频变压器设计细节。提出了转换器键波形以评估电池和电网上的电源质量,以及其动态行为。实验实验室装置被描述和结果示证明用于低电压(LV)微网的技术益处,如果电动车辆充电器包括基于频率 - 电压下垂概念的电力潮流控制。

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