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Agent-based power routing in Active Distribution Networks

机译:主动配电网中基于代理的电源路由

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摘要

The expected large-scale implementation of distributed generation (DG) requires a change in the current structure and operation of distribution networks. The future distribution network must be able to manage power flow in a bidirectional way, cope with uncertainties of renewable power generation and adjust to demands of more sophisticated customers. This paper introduces the concept of a power routing function to avoid congestion, minimize the operating cost, and adequately serve the requirements of customers. This function considers the optimal power flow as a problem of minimum cost flow in the graph theory. The Scaling Push-Relabel (SPR) algorithm is used to solve that problem. It will be implemented in a distributed agent environment which is suitable with a design concept of Active Distribution Networks. The performance of the power routing function is tested on a simulation of the medium voltage 32-bus network. Simulation results show the effectiveness and flexibility of the proposed function in dealing with issues of load demand increases and network configuration changes.
机译:分布式发电(DG)的预期大规模实施要求改变配电网络的当前结构和运行。未来的配电网络必须能够双向管理潮流,应对可再生能源发电的不确定性,并适应更复杂的客户的需求。本文介绍了电源路由功能的概念,可避免拥塞,最大程度地降低运营成本并充分满足客户的需求。此函数在图论中将最佳潮流视为最小成本潮流的问题。缩放推入重贴标(SPR)算法用于解决该问题。它将在分布式代理环境中实现,该环境适合于Active Distribution Networks的设计概念。电源路由功能的性能在中压32总线网络的仿真上进行了测试。仿真结果表明,所提出功能在处理负载需求增加和网络配置变化方面的有效性和灵活性。

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