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A Hierarchical Optimization Model for Multi-Microgrids to Enhance Power System Resilience

机译:多微电网的分层优化模型,以增强电力系统的弹性

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This paper presents a hierarchical optimization model based on multi-microgrids to improve the power system resilience in response to increasingly frequent extreme events. When supply of power from the main grid is interrupted, in the first stage, microgrids minimize the load curtailment through efficiently scheduling their available resources. In the second stage, microgrids share power in order to utilize the surplus capacities to support the unserved loads. A consensus algorithm is applied for microgrids information exchange and a novel ratio is designed to determine the allocated value of exported power in a distributed way. The optimization model is formulated as a mix-integer linear programming (MILP) problem. Test results validate the effectiveness of the proposed model.
机译:本文提出了一种基于多微电网的分层优化模型,以提高电力系统的适应能力,以应对日益频繁的极端事件。当主电网的电源中断时,在第一阶段,微电网通过有效地调度其可用资源来最大程度地减少负荷削减。在第二阶段,微电网共享功率,以利用剩余容量来支撑未服务的负载。将共识算法应用于微电网信息交换,并设计了一种新颖的比率,以分布式方式确定输出功率的分配值。优化模型被公式化为混合整数线性规划(MILP)问题。测试结果验证了所提出模型的有效性。

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