Title :
Survey of tools for risk assessment of cascading outages
Author :
Papic, M. ; Bell, K. ; Chen, Y. ; Dobson, I. ; Fonte, L. ; Haq, E. ; Hines, P. ; Kirschen, D. ; Luo, X. ; Miller, S. ; Samaan, N. ; Vaiman, M. ; Varghese, M. ; Zhang, P.
Author_Institution :
Idaho Power Co., Boise, ID, USA
Abstract :
This paper is a result of ongoing activity carried out by Understanding, Prediction, Mitigation and Restoration of Cascading Failures Task Force under IEEE Computer Analytical Methods Subcommittee (CAMS). The task force´s previous papers are focused on general aspects of cascading outages such as understanding, prediction, prevention and restoration from cascading failures. This is the second of two new papers, which extend this previous work to summarize the state of the art in cascading failure risk analysis methodologies and modeling tools. The first paper reviews the state of the art in methodologies for performing risk assessment of potential cascading outages. This paper describes the state of the art in cascading failure modeling tools, documenting the view of experts representing utilities, universities and consulting companies. The paper is intended to constitute a valid source of information and references about presently available tools that deal with prediction of cascading failure events. This effort involves reviewing published literature and other documentation from vendors, universities and research institutions. The assessment of cascading outages risk evaluation is in continuous evolution. Investigations to gain even better understanding and identification of cascading events are the subject of several research programs underway aimed at solving the complexity of these events that electrical utilities face today. Assessing the risk of cascading failure events in planning and operation for power transmission systems require adequate mathematical tools/software.
Keywords :
power system management; power transmission planning; risk management; IEEE Computer Analytical Methods Subcommittee; cascading failure events; cascading failure modeling tools; cascading failure risk analysis methodologies; cascading outages risk evaluation; electrical utilities; mathematical tools; power transmission systems; risk assessment; Planning; Power system faults; Power system protection; Power system stability; Stability analysis; Steady-state; Thermal stability; Cascading Outages; Operations; Risk Assessment; Transmission Planning;
Conference_Titel :
Power and Energy Society General Meeting, 2011 IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4577-1000-1
Electronic_ISBN :
1944-9925
DOI :
10.1109/PES.2011.6039371