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首页> 外文期刊>Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies >Topological characterization and modeling of dynamic evolving power distribution networks
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Topological characterization and modeling of dynamic evolving power distribution networks

机译:动态演进配电网络的拓扑特征和建模

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摘要

Existing complex network models are either with unvaried network size or based on simple growth mechanisms which cannot accurately describe the operational dynamics and characteristics of realistic networks. In this paper, we exploit the dynamic evolving phenomenon of power distribution networks covering its growth, reconnection and shrinking characteristics from the network topology perspective, and attempt to produce a novel dynamic evolving model through introducing the locating probability and shrinking mechanism. The proposed modeling approach is assessed and validated through extensive numerical simulation experiments for a range of standard IEEE power test systems. The statistical results reveal that the node degree distribution of the power network follows the power-law distribution and the node removal probability of the network dynamic has a significant impact on the network evolvement and robustness. Such macroscopic topological findings can greatly benefit the power distribution network operators (DNOs) from many aspects, including network planning, vulnerability analysis, fault prediction and cost-effective reinforcement.
机译:现有的复杂网络模型要么具有不变的网络规模,要么基于无法准确描述现实网络的运行动态和特征的简单增长机制。在本文中,我们从网络拓扑的角度出发,探讨了配电网的动态演化现象,包括其增长,重新连接和收缩的特征,并试图通过引入定位概率和收缩机制来产生一种新颖的动态演化模型。通过一系列标准IEEE功率测试系统的广泛数值模拟实验,对提出的建模方法进行了评估和验证。统计结果表明,电力网络的节点度分布遵循幂律分布,网络动态的节点去除概率对网络的发展和鲁棒性有重要影响。这样的宏观拓扑发现可以从许多方面极大地使配电网络运营商(DNO)受益,包括网络规划,漏洞分析,故障预测和具有成本效益的加固。

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