DocumentCode
2593174
Title
Chronological Monte Carlo-Based Assessment of Distribution System Reliability
Author
Silva, Armando M Leite da ; Cassula, Agnelo M. ; Nascimento, Luiz C. ; Freire, José C., Jr. ; Sacramento, Cleber E. ; Guimarães, Ana Carolina R
Author_Institution
Power Syst. Eng. Group, Fed. Univ. Itajuba
fYear
2006
fDate
11-15 June 2006
Firstpage
1
Lastpage
7
Abstract
Regulatory authorities in many countries, in order to maintain an acceptable balance between appropriate customer service qualities and costs, are introducing a performance-based regulation. These regulations impose penalties, and in some cases rewards, which introduce a component of financial risk to an electric power utility due to the uncertainty associated with preserving a specific level of system reliability. In Brazil, for instance, one of the reliability indices receiving special attention by the utilities is the maximum continuous interruption duration per customer (MCID). This paper describes a chronological Monte Carlo simulation approach to evaluate probability distributions of reliability indices, including the MCID, and the corresponding penalties. In order to get the desired efficiency, modern computational techniques are used for modeling (UML-Unified Modeling Language) as well as for programming (object-oriented programming). Case studies on a simple distribution network and on real Brazilian distribution systems are presented and discussed
Keywords
Monte Carlo methods; Unified Modeling Language; customer services; government policies; object-oriented programming; power distribution reliability; power system simulation; risk management; statistical distributions; Brazilian distribution system reliability; MCID; UML; Unified Modeling Language; chronological Monte Carlo simulation; customer service costs; customer service qualities; financial risk; maximum continuous interruption duration per customer; object-oriented programming; penalties; performance-based regulation; probability distributions; regulatory authorities; reliability indices; rewards; Costs; Frequency; Maintenance; Object oriented modeling; Object oriented programming; Power system reliability; Probability distribution; Risk management; Uncertainty; Unified modeling language; Distribution reliability; Markov chains; Monte Carlo simulation; object-oriented programming;
fLanguage
English
Publisher
ieee
Conference_Titel
Probabilistic Methods Applied to Power Systems, 2006. PMAPS 2006. International Conference on
Conference_Location
Stockholm
Print_ISBN
978-91-7178-585-5
Type
conf
DOI
10.1109/PMAPS.2006.360423
Filename
4202386
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