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Two-level Scheduling Optimization of Multi-microgrids Operation in Smart Distribution Networks

机译:智能配电网络中多微电网操作的两级调度优化

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Electric distribution systems are currently undergoing a transition from passive entities to smart infrastructures, thanks to the advances in communication and automation technologies. However, the integration of new concepts in distribution networks, such as microgrids, distributed generation, energy storage etc., introduces various challenges regarding the energy management procedures. This paper proposes an optimal coordination model of multiple microgrids in smart distribution networks, based on a two-level optimization scheme. The upper-level of the proposed model optimizes the distribution network operation, while the economic dispatch is calculated in each microgrid in the lower-level of the methodology. Two scheduling modes are analyzed for the microgrids operation: independent grid-connected scheduling and coordinated scheduling mode. The influence of the microgrids scheduling on the distribution network operation is investigated using the test IEEE 33-bus system, modified with three microgrids, each including loads, controllable generators, renewable sources, and energy storage systems.
机译:由于通信和自动化技术的进步,目前正在从被动实体到智能基础设施的转型。然而,在分发网络中的新概念的集成,例如微电网,分布式发电,能量存储等,引入了关于能量管理程序的各种挑战。本文提出了一种基于两级优化方案的智能配电网络中多微电网的最佳协调模型。所提出的模型的上层优化了分配网络运行,而经济调度是在方法的较低级别的每个微电网中计算的。分析了两个调度模式,用于微电网操作:独立的网格连接调度和协调调度模式。在微网上的分布网络操作调度的影响使用测试IEEE 33节点系统,具有三个微电网,每个包括加载,可控发电机,可再生能源,和能量存储系统修改的影响。

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