Analysis, Design, and Simulation of a Dual Active Bridge for PV-based Residential Nanogrids

R. Haroun, A. E. Aroudi
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引用次数: 1

Abstract

In this paper, theoretical modeling, design and numerical simulations are presented for a dc-dc dual active bridge (DAB) converter in a Phtovoltaic (PV)-based nanogrid. Different tasks in the nanogrid are performed using the same topology. A case study of a nanogird with three PV modules connected to a regulated dc bus using three DAB converters will be considered. For these DAB converters, the input voltage is controlled based on natural sampling fixed frequency pulse width modulation. The dc bus is regulated by using a grid-connected dc-ac inverter injecting the harvested PV power to the grid while performing active power quality control. The dc bus is also connected to a storage battery through a bidirectional DAB converter operating as a battery charger/discharger. The Numerical simulation results show the validity of the mathematical model and the capability of the DAB converter to perform all the previous tasks in a PV-based nanogrid.
基于pv的住宅纳米电网双有源电桥的分析、设计与仿真
本文对基于光伏的纳米电网中的dc-dc双有源电桥(DAB)变换器进行了理论建模、设计和数值模拟。纳米网格中的不同任务使用相同的拓扑来执行。将考虑使用三个DAB转换器将三个光伏模块连接到稳压直流母线的纳米栅极的案例研究。对于这些DAB变换器,输入电压的控制是基于自然采样固定频率脉宽调制。直流母线通过使用并网直流-交流逆变器将收获的光伏电力注入电网来调节,同时执行有功电能质量控制。直流母线还通过作为电池充电/放电的双向DAB转换器连接到蓄电池。数值仿真结果表明了数学模型的有效性和DAB变换器在基于pv的纳米网格中完成上述任务的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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