DocumentCode
2594021
Title
Risk assessment of power systems SCADA
Author
Hamoud, Gomaa ; Chen, R.-L. ; Bradley, Chen Ian
Author_Institution
Hydro One Inc., Toronto, Ont., Canada
Volume
2
fYear
2003
fDate
13-17 July 2003
Abstract
SCADA systems are widely used in power systems for monitoring, operation and control purposes. Failure of the SCADA system can result in severe consequences such as customer load losses and equipment damages, etc. Evaluating these consequences at planning stage can help select the appropriate level of reliability of the SCADA systems. This paper presents a practical method for quantifying the risk associated with the failure of the SCADA systems utilized in power systems. The method first identifies the various components of risk and then evaluates each by considering overlap of the two events, failure of control by SCADA and failure of automatic operation of the power system network. The SCADA risk is calculated and expressed in terms of dollars on a station by station basis. The calculated risk can be used to rank a group of stations, to identify the importance of stations and to establish the reliability requirements for the SCADA system that has the lowest capital cost. The proposed method is applied to the Hydro One Transmission Networks System with its historical operating performance data.
Keywords
SCADA systems; power distribution reliability; power system control; power system measurement; power transmission reliability; risk analysis; Hydro One Transmission Networks system; SCADA systems; customer interruption cost; customer load losses; equipment damages; power distribution reliability; power system network; power systems control; power systems monitoring; power transmission reliability; risk analysis; Automatic control; Condition monitoring; Control systems; Costs; Power system control; Power system planning; Power system reliability; Power systems; Risk management; SCADA systems;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Engineering Society General Meeting, 2003, IEEE
Print_ISBN
0-7803-7989-6
Type
conf
DOI
10.1109/PES.2003.1270402
Filename
1270402
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