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Distributed routing algorithms to manage power flow in agent-based active distribution network

机译:分布式路由算法来管理基于代理的主动配电网络中的潮流

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The current transition from passive to active electric distribution networks comes with problems and challenges on bi-directional power flow in the network and the uncertainty in the forecast of power generation from grid-connected renewable and distributed energy sources. The power flow management would need to be distributed, flexible, and intelligent in order to cope with these challenges. Considering the optimal power flow (OPF) problem as a minimum cost flow represented with the graph, this paper applies a cost-scaling push-relabel algorithm in order to solve the OPF in a distributed agent environment. The algorithm's performance is compared with the successive shortest path algorithm developed in our previous work. The simulation is implemented for both meshed and radial networks. The simulation results show the advantages of the cost-scaling push-relabel algorithm over the shortest path algorithm in the radial networks with respect to significantly reduced number of exchanged messages on the agent platform, and thus the reduced time for calculation. This will be of great importance if the method is to be applied to a large system.
机译:当前从无源配电网到有源配电网的过渡带来了网络中双向功率流的问题和挑战,以及并网可再生和分布式能源发电量预测的不确定性。功率流管理将需要分布式,灵活和智能化,以应对这些挑战。考虑到最优功率流(OPF)问题是用图表示的最小成本流,本文应用了一种按成本缩放的推入重贴标签算法,以解决分布式Agent环境中的OPF问题。该算法的性能与我们先前工作中开发的连续最短路径算法进行了比较。对网状网络和径向网络均进行了仿真。仿真结果表明,相对于代理网络上的交换消息数量显着减少,从而节省了计算时间,相对于径向网络中的最短路径算法,成本缩放推入重贴标签算法具有优势。如果将该方法应用于大型系统,这将非常重要。

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