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A Control Strategy of DC Building Microgrid Connected to the Neighborhood and AC Power Network

机译:直流建筑微电网接入社区和交流电网的控制策略

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Recently, the use of DC microgrid distribution system has become more attractive than traditional AC systems due to their energy efficiency and ability to easily integrate with renewable energy sources and batteries. This paper proposes a 500 V DC microgrid which consists of a 20 kWp photovoltaic panel, batteries, and DC loads. A hierarchical control strategy to ensure balance power of the DC microgrid and the maintenance of common DC bus voltage is presented. The capability of exchanging power energy of the microgrid with the power system of neighborhood buildings is also considered. Typical operation modes are simulated in the Matlab/simulink environment to confirm the good performance of the controllers and the efficiency of appropriately controlling the charge?¢????discharge of the battery system. This research is expected to bring benefits to the design and operation of the system, such as reducing the capacity of batteries, increasing the self-supply of buildings, and decreasing the electricity demand from the AC grid.
机译:近来,由于直流微电网配电系统的能源效率以及易于与可再生能源和电池集成的能力,因此它比传统的交流系统更具吸引力。本文提出了一个500 V的直流微电网,该微电网由20 kWp的光伏面板,电池和直流负载组成。提出了一种分层控制策略,以确保直流微电网的功率平衡和公共直流母线电压的维持。还考虑了与附近建筑物的电力系统交换微电网的电力能量的能力。在Matlab / simulink环境中对典型的操作模式进行了仿真,以确认控制器的良好性能以及适当控制电池系统充放电的效率。预期该研究将为系统的设计和操作带来好处,例如减少电池容量,增加建筑物的自供电以及减少交流电网的电力需求。

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