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Optimal Load Shedding Strategy of Microgrid Based on Improving Reliability of Load Power Supply

机译:基于提高负载电源可靠性的微电网最优载荷脱落策略

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When grid-connected micro grid operates in island mode, the energy output of micro sources and the capacity of energy storages cannot ensure the power supply for all micro grid loads, it is necessary to remove part of micro grid loads in order to maximally guarantee the power supply for the important loads and extend the power supply time of all loads as far as possible. In this paper, an optimal load shedding strategy of micro grid based on improving the reliability of load power supply is presented, according to the power prediction of micro sources and loads during the operation of the island, charging and discharging power and surplus energy of energy storages are predicted, and the switching time of loads at different level are determined by optimization. The application of this strategy improves the power supply reliability of all the loads in the micro grid while ensuring the continuous and reliable power supply of important loads. A micro grid simulation system based on the load shedding strategy is established, and the simulation results show the correctness and practicability of the strategy.
机译:当连接电网的微电网在岛模式下运行时,微源的能量输出和能量存储器的容量不能确保所有微电网负载的电源,必须去除部分微网格载荷,以便最大衡保证尽可能地扩展所有负载的电源和扩展所有负载的电源。本文提出了基于提高负载电源可靠性的微网格的最佳载荷脱落策略,根据岛,充电和放电功率和能量剩余能量的微源和负载的功率预测预测存储器,并且通过优化确定不同级别的负载的切换时间。该策略的应用提高了微电网中所有负载的电源可靠性,同时确保了重要载荷的连续且可靠的电源。建立了一种基于负载脱落策略的微电网仿真系统,仿真结果表明了该策略的正确性和实用性。

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