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Analysing the Use of Graph Theory to Assess Topological Impacts on Transient Stability

机译:图解图论利用拓扑影响对瞬态稳定性的影响

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This paper analyses the relationship between system transient stability and network topology by using graph theory and correlation analysis. In an electrical network, changes to system structure have effects on transient stability. It is important to find optimal indicators to represent the topology and transient stability in order to analyse this relationship. In this paper, different graph theory metrics – namely the average node degree and average shortest path length – are selected as candidate topology metrics. A variety of weighting factors are considered including the transmission line reactance, apparent power flow, and reactive power loss. Transient stability is quantified by considering the network critical clearing time and rotor angle difference transient stability index. The correlation between topology and transient stability metrics has been calculated for a wide variety of contingency cases in order to analyse the relationship between topology and stability and to establish which weighted graph metrics have the strongest relationships with the resulting transient stability of the system. Case studies are completed on a four-area network and on the IEEE 39-bus system to demonstrate the proposed method. Topology indices weighted by power flow and power loss have the strongest correlation with transient stability in the small system. In the large system, the relationship is weaker, highlighting the complexities of applying this for the analysis of larger systems.
机译:本文通过使用曲线图理论和相关分析分析了系统瞬态稳定性与网络拓扑的关系。在电气网络中,对系统结构的变化对瞬态稳定性产生影响。重要的是要找到最佳指标来代表拓扑和瞬态稳定性以分析这种关系。在本文中,不同的图形理论度量 - 即平均节点度和平均最短路径长度 - 被选为候选拓扑度量。考虑各种加权因子,包括传输线电抗,表观功率流和无功功率损耗。通过考虑网络关键清算时间和转子角差瞬态稳定性指标来量化瞬态稳定性。拓扑和瞬态稳定度量之间的相关性已经针对各种各样的应急情况计算了拓扑和稳定性之间的关系,并建立了加权图标准与系统的瞬态稳定性具有最强的关系。案例研究完成在四个区域网络和IEEE 39总线系统上完成,以展示所提出的方法。功率流量和功率损耗加权的拓扑指数具有最强的与小系统中的瞬态稳定性相关。在大型系统中,这种关系较弱,突出了对较大系统进行分析的应用程序的复杂性。

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