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Day-ahead Economic Dispatch of Microgrid Based on Multi-agent System Considering Wind Power Generation Uncertainty

机译:基于多种子体系统考虑风力发电不确定性的多助理系统

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The flexible control strategies and massive control data that required to cope with the uncertain WPG make the traditional centralized control mode difficult to effectively manage the microgrid operation. Therefore, MAS with the centralize-decentralize characteristic is introduced in microgrid operation. The structure of microgrid MAS, specific functions of agents are illustrated in this paper. A DED model based on MAS considering WPG uncertainty is presented to verify the validity of MAS on microgrid operation. The model is a two-stage robust model, which can be decomposed into a MP and SP. By using duality theory, Big-M method and C&CG algorithm, the optimal DED strategy can be obtained. Case study of a microgrid with the combined heat and power system is applied to discuss the interaction and coordination of the agents. The effectiveness of the DED model based on MAS considering WPG uncertainty and the applicability of MAS on microgrid operation are also verified.
机译:灵活的控制策略和大规模控制数据需要应对不确定的WPG使传统的集中控制模式难以有效地管理微电网操作。因此,在微电网操作中引入了具有集中分散特性的MAS。本文示出了微电网MAS的结构,特定的试剂功能。提出了基于MAS考虑WPG不确定性的MAS的DED模型,以验证MAS对微电网操作的有效性。该模型是一种两级鲁棒模型,可以将其分解为MP和SP。通过使用二元理论,Big-M方法和C&CG算法,可以获得最佳的DED策略。应用微电网与组合的热量和电力系统的研究探讨了药剂的相互作用和协调。还验证了基于MAS的基于MAS的DED模型的有效性以及MAS对微电网操作的MAS的适用性。

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