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Optimization of Virtual Power Plant Topology with Distributed Generation Sources

机译:具有分布式发电源的虚拟电厂拓扑的优化

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The article is devoted to the construction of the Virtual Power Plant (VPP) distribution network (DN), which unites sources of distributed generation and a centralized electrical network. Graph theory and structural-topological analysis are used to determining the optimal VPP DN topology. The main idea is to assess the reliability and efficiency of VPP DN on the basis of structural-topological characteristics of its graphs. The results of calculations for a low-voltage VPP DN with a wind power plant and a gas piston unit are presented. The PSCAD model of VPP DN is described, which explores the dependencies of VPP DN parameters on its topologies and operating modes. A physical model VPP DN has been developed: it consists of simulators of wind and solar power plants, power storage devices, loads and power lines. On the basis of the physical model, a study of the quality of electricity in VPP DN depending on the ratio of the power of the centralized electrical network and the distributed generation sources has been carried out. Based on the results of the study, an algorithm for determining the optimal VPP DN topology has been developed.
机译:本文专门讨论虚拟电厂(VPP)配电网络(DN)的建设,该网络将分布式发电的资源和集中式电网相结合。使用图论和结构拓扑分析来确定最佳的VPP DN拓扑。主要思想是根据其图的结构拓扑特征来评估VPP DN的可靠性和效率。给出了带有风力发电厂和气体活塞单元的低压VPP DN的计算结果。描述了VPP DN的PSCAD模型,该模型探讨了VPP DN参数对其拓扑和操作模式的依赖性。已经开发了物理模型VPP DN:它由风力和太阳能发电厂的仿真器,电力存储设备,负载和电力线组成。根据物理模型,已对VPP DN中的电能质量进行了研究,具体取决于集中式电网与分布式发电源的功率比。根据研究结果,开发了一种确定最佳VPP DN拓扑的算法。

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