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Directed graph-based distribution network reconfiguration for operation mode adjustment and service restoration considering distributed generation

机译:考虑到分布式发电的基于方向图的配电网络重构,用于运行模式调整和服务恢复

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摘要

We present a directed graph-based method for distribution network reconfiguration considering distributed generation. Two reconfiguration situations are considered: operation mode adjustment with the objective of minimizing active power loss (situation I) and service restoration with the objective of maximizing loads restored (situation II). These two situations are modeled as a mixed integer quadratic programming problem and a mixed integer linear programming problem, respectively. The properties of the distribution network with distributed generation considered are reflected as the structure model and the constraints described by directed graph. More specifically, the concepts of “in-degree” and “out-degree” are presented to ensure the radial structure of the distribution network, and the concepts of “virtual node” and “virtual demand” are developed to ensure the connectivity of charged nodes in every independent power supply area. The validity and effectiveness of the proposed method are verified by test results of an IEEE 33-bus system and a 5-feeder system.
机译:我们提出了一种考虑分布式发电的基于有向图的配电网络重构方法。考虑了两种重新配置情况:以最小化有功功率损耗为目标的运行模式调整(情形I)和以最大化的恢复负载为目标的服务恢复(情形II)。将这两种情况分别建模为混合整数二次规划问题和混合整数线性规划问题。考虑了分布式发电的配电网络的属性反映为结构模型和有向图描述的约束。更具体地说,提出“入度”和“出度”的概念以确保配电网络的放射状结构,并开发“虚拟节点”和“虚拟需求”的概念以确保收费的连通性每个独立电源区域中的节点。 IEEE 33总线系统和5馈线系统的测试结果验证了该方法的有效性和有效性。

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