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Distribution power flow management utilising an online Optimal Power Flow technique

机译:配送电流管理利用在线最佳功率流技术

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This paper describes the current connection regime for distributed generation (DG) in the UK and presents a novel application of the Optimal Power Flow (OPF) technique for automatic power flow management (PFM) to manage thermal constraints in distribution networks. OPF formulations have been used, in an offline mode, as a power system planning tool for several years. The novel implementation of OPF for ‘corrective’ PFM in an online operational mode, for MV distribution networks, is presented and tested in this paper. The authors demonstrate, through simulations conducted on a commercially available substation computer, that such an application of OPF can represent first on, last off generator connection agreements that reflect the current principles of access in the UK. Two case study networks, a 33kV and an 11kV, provide the basis for assessment of the OPF-based PFM algorithm in terms of computation time to arrive at a solution in the event of a network thermal excursion and the level of DG curtailment necessary to meet network thermal limits. Assessments are made and fully discussed of the suitability for an OPF-based approach for distribution network management within an online network control scheme including discussion of the important consideration of control robustness.
机译:本文介绍了英国分布式发电(DG)的当前连接制度,并提出了一种用于自动电流管理(PFM)的最佳功率流量(OPF)技术的新颖应用,以管理分发网络中的热约束。 OPF配方在离线模式下使用了几年的电力系统规划工具。本文介绍和测试了在线运行模式下对在线运行模式中的“纠正”PFM的OPF的新颖实现。作者展示了通过在市售的变电站计算机上进行的模拟,这种应用OPF的应用可以首先代表,最后的发生器连接协议,反映了英国的当前访问原则。两种案例研究网络,33kV和11kV,为评估基于OPF的PFM算法的基础提供了在计算时间,以便在网络热偏移的情况下到达解决方案和所需的DG缩减水平网络热限制。对在线网络控制方案中的基于OPF的分销网络管理方法的适用性进行了评估,包括讨论控制稳健性的重要考虑因素。

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