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An improved framework for power grid vulnerability analysis considering critical system features

  • Yuanyu Dai
  • , Guo Chen
  • , Zhaoyang Dong
  • , Yusheng Xue
  • , David J. Hill
  • , Yuan Zhao

Research output: Contribution to journalArticleResearchpeer-review

Abstract

In recent years the rapid development of complex network theory has provided a new angle on the vulnerability analysis of a power grid. However, current analysis models are usually general ones that may ignore some specific features of power systems. In order to address the issue, this paper proposes an improved framework for the vulnerability analysis of power grids. Firstly, the traditional topology based graph model is improved by depicting a power grid as a weighted graph based on the reactance matrix. Secondly, the concept of load is redefined by using power angle information. Thirdly, the power flow constraints are adopted instead of the shortest path based flow scheme. Based on the proposed framework, an improved dynamic analysis model is developed. In addition, numerical simulations for both a general traditional model and the proposed model are investigated based on the IEEE 118-bus system respectively. The comparison demonstrates that the improved model is more effective and efficient for the vulnerability analysis of a power grid.

Original languageEnglish
Pages (from-to)405-415
Number of pages11
JournalPhysica A: Statistical Mechanics and its Applications
Volume395
DOIs
Publication statusPublished - 1 Feb 2014
Externally publishedYes

Keywords

  • Cascading failure
  • Efficiency
  • Power angle
  • Power grids
  • Reactance matrix

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