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The Use of Constraint Programming for the Autonomous Management of Power Flows

机译:约束规划在潮流管理中的应用

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This paper describes a novel network agnostic approach to the real-time management of power flows within MV distribution networks with a number of embedded generators. The approach in question uses the artificial intelligence technique of constraint programming to autonomously make decisions about how to manage a number of generators as part of a larger autonomous regional active network management system called AuRA-NMS. The results of testing using commercially available IEC 61850 compliant substation computing hardware, connected to a realtime simulator, are presented for two different case study networks: an interconnected 33 kV network and an 11 kV radial network. These results demonstrate the feasibility of the approach both in terms of its applicability to different network topologies and its real-time performance. The paper concludes by discussing the methodology for future testing which aims to assess the robustness of the approach against a number of other proposed approaches and the plans for field trials of the current prototype.
机译:本文介绍了一种新颖的网络不可知论方法,用于实时管理带有许多嵌入式发电机的MV配电网络中的潮流。所讨论的方法使用约束编程的人工智能技术来自主决策如何管理作为大型自主区域活动网络管理系统(称为AuRA-NMS)的一部分的多个发电机。针对两个不同的案例研究网络,展示了使用市售的符合IEC 61850的变电站计算硬件并连接到实时模拟器的测试结果:两个互连的33 kV网络和一个11 kV径向网络。这些结果证明了该方法在适用于不同网络拓扑和实时性能方面的可行性。本文最后讨论了未来测试的方法,该方法旨在评估该方法相对于其他一些建议方法的稳健性以及当前原型的现场试验计划。

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