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Optimization of Transmission Expansion Planning by Minimal Cut Sets Based on Graph Theory

机译:基于图论的最小割集优化输电扩容计划

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This research proposes a method based on the graph theory for transmission network expansion planning. The proposed method suggests an optimal investment cost for transmission network expansion planning by using the minimal cut sets based on the graph theory. On the basis of the oriented connected graph of an intent transmission network, this research aims to find the maximum power flows through the bottlenecks of the network. The main object function of the proposed algorithm is the construction cost of new lines, which needs to be added in parallel with the overloading lines of an existing transmission network. The major consideration is the load demand in the given future. This research uses three benchmark systems to illustrate the proposed method: Garver's 6-bus system (Garver system) the 24-bus and 21-bus IEEE reliability test systems. In a word, the Garver system is used to demonstrate the algorithm of the proposed method, and the 24-bus and 21-bus IEEE reliability test systems are tested by using the proposed method in many cases to compare the results and performance with those of recent studies. The findings of this research are of value to solve transmission network expansion planning problems.
机译:提出了一种基于图论的输电网络扩展规划方法。提出的方法通过基于图论的最小割集,为传输网络的扩展规划提出了最优的投资成本。基于意图传输网络的有向连通图,本研究旨在寻找通过网络瓶颈的最大功率。该算法的主要目标功能是新线路的建设成本,需要与现有传输网络的过载线路并行添加。主要考虑因素是给定将来的负载需求。这项研究使用三个基准系统来说明所提出的方法:Garver的6总线系统(Garver system),24总线和21总线IEEE可靠性测试系统。简而言之,使用Garver系统演示了该方法的算法,并在许多情况下使用该方法对24总线和21总线IEEE可靠性测试系统进行了测试,以将结果与性能进行比较。最近的研究。这项研究的结果对于解决传输网络扩展规划问题具有价值。

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