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Dual-Layer Optimal Dispatching Strategy for Microgrid Energy Management Systems considering Demand Response

机译:考虑需求响应的微电网能源管理系统双层最优调度策略

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摘要

The continuous development of microgrid's technology creates favorable conditions for the access of distributed energy. Firstly, in order to consider the interests of the demand side and the power side, this paper presents a dual-layer optimal dispatching model of microgrid based on demand response. The objective of the first-layer optimization is to obtain the maximum load satisfaction and to optimize the load curve. The objective of the second-layer optimization is to make the microgrid system economical and environmentally friendly and to optimize the power utilization ratio. And a microsource control strategy based on the isolated microgrid is proposed, which can optimize the operation state of battery and improve the economy of the system. Finally, the Nondominated Sorting Genetic Algorithm-II (NSGA-II) is adopted to solve the optimal scheduling problem of the isolated microgrid. The simulation results indicate that the microsource scheduling strategy proposed in this paper can improve the operation economy and environmental conservation of the system. It can improve the reliability ofmicrogrid power supply and reduce energy waste.
机译:微电网技术的不断发展为分布式能源的获取创造了有利条件。首先,为了考虑需求侧和电力侧的利益,本文提出了一种基于需求响应的双层微电网最优调度模型。第一层优化的目的是获得最大的负载满意度并优化负载曲线。第二层优化的目的是使微电网系统经济,环保,并优化功率利用率。提出了一种基于隔离微电网的微源控制策略,可以优化电池的运行状态,提高系统的经济性。最后,采用非支配排序遗传算法-II(NSGA-II)解决孤立微电网的最优调度问题。仿真结果表明,本文提出的微源调度策略可以提高系统的运行经济性和环境保护。可以提高微电网电源的可靠性,减少能源浪费。

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