Identifying and assessing power system vulnerabilities to transmission asset outages via cascading failure analysis
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[1] Daniel S. Kirschen,et al. Criticality in a cascading failure blackout model , 2006 .
[2] J. Ser,et al. A Critical Review of Robustness in Power Grids Using Complex Networks Concepts , 2015 .
[3] Barry M. Horowitz,et al. Modeling interdependent infrastructures for sustainable counterterrorism , 2004 .
[4] Claudio M. Rocco Sanseverino,et al. Assessing the Vulnerability of a Power System Through a Multiple Objective Contingency Screening Approach , 2011, IEEE Transactions on Reliability.
[5] Hsiao-Dong Chiang,et al. CPFLOW: a practical tool for tracing power system steady-state stationary behavior due to load and generation variations , 1995 .
[6] M. Cheng,et al. A game theory approach to vulnerability analysis: Integrating power flows with topological analysis , 2016 .
[7] Marko Čepin. Probability of restoring power to the transmission power system and the time to restore power , 2020, Reliab. Eng. Syst. Saf..
[8] Chao Yang,et al. Severe Multiple Contingency Screening in Electric Power Systems , 2008, IEEE Transactions on Power Systems.
[9] Paul Hines,et al. A “Random Chemistry” Algorithm for Identifying Collections of Multiple Contingencies That Initiate Cascading Failure , 2012, IEEE Transactions on Power Systems.
[10] Sinan Tas,et al. Addressing vulnerability to cascading failure against intelligent adversaries in power networks , 2016 .
[11] Venkataramana Ajjarapu,et al. The continuation power flow: a tool for steady state voltage stability analysis , 1991 .
[12] Amin Abedi,et al. Review of major approaches to analyze vulnerability in power system , 2019, Reliab. Eng. Syst. Saf..
[13] Enrico Zio,et al. The role of network theory and object-oriented modeling within a framework for the vulnerability analysis of critical infrastructures , 2009, Reliab. Eng. Syst. Saf..
[14] Fei Xue,et al. Analysis of structural vulnerabilities in power transmission grids , 2009, Int. J. Crit. Infrastructure Prot..
[15] M. A. S. Monfared,et al. Comparing topological and reliability-based vulnerability analysis of Iran power transmission network , 2014 .
[16] Enrico Pons,et al. A perspective overview of topological approaches for vulnerability analysis of power transmission grids , 2015, Int. J. Crit. Infrastructures.
[17] Enrico Zio,et al. A Hierarchical Resilience Enhancement Framework for Interdependent Critical Infrastructures , 2021, Reliab. Eng. Syst. Saf..
[18] Jesus Beyza,et al. The effects of the high penetration of renewable energies on the reliability and vulnerability of interconnected electric power systems , 2021, Reliab. Eng. Syst. Saf..
[19] Marko Cepin,et al. A multi-objective optimization based solution for the combined economic-environmental power dispatch problem , 2013, Eng. Appl. Artif. Intell..
[20] Pierre Henneaux,et al. Benchmarking Quasi-Steady State Cascading Outage Analysis Methodologies , 2018, 2018 IEEE International Conference on Probabilistic Methods Applied to Power Systems (PMAPS).
[21] Enrico Zio,et al. Identifying groups of critical edges in a realistic electrical network by multi-objective genetic algorithms , 2012, Reliab. Eng. Syst. Saf..
[22] Shuai YANG,et al. Failure probability estimation of overhead transmission lines considering the spatial and temporal variation in severe weather , 2019 .
[23] Giovanni Sansavini,et al. Quantitative comparison of cascading failure models for risk-based decision making in power systems , 2020, Reliab. Eng. Syst. Saf..
[24] Amin Abedi,et al. Power flow-based approaches to assess vulnerability, reliability, and contingency of the power systems: The benefits and limitations , 2020, Reliab. Eng. Syst. Saf..
[25] Borut Mavko,et al. Application of the fault tree analysis for assessment of power system reliability , 2009, Reliab. Eng. Syst. Saf..
[27] V. E. Lynch,et al. Critical points and transitions in an electric power transmission model for cascading failure blackouts. , 2002, Chaos.
[28] I. Kamwa,et al. Causes of the 2003 major grid blackouts in North America and Europe, and recommended means to improve system dynamic performance , 2005, IEEE Transactions on Power Systems.
[29] Enrico Zio,et al. An Optimization‐Based Framework for the Identification of Vulnerabilities in Electric Power Grids Exposed to Natural Hazards , 2019, Risk analysis : an official publication of the Society for Risk Analysis.
[30] Pierluigi Siano,et al. A Survey on Power System Blackout and Cascading Events: Research Motivations and Challenges , 2019, Energies.
[31] Jian Li,et al. AC power flow importance measures considering multi-element failures , 2017, Reliab. Eng. Syst. Saf..
[32] Bri-Mathias Hodge,et al. An Extended IEEE 118-Bus Test System With High Renewable Penetration , 2018, IEEE Transactions on Power Systems.
[33] R D Zimmerman,et al. MATPOWER: Steady-State Operations, Planning, and Analysis Tools for Power Systems Research and Education , 2011, IEEE Transactions on Power Systems.