DocumentCode
1186279
Title
An Individual Welfare Maximation Algorithm for Electricity Markets
Author
Weber, J. D. ; Overbye, Thomas J.
Author_Institution
Power World Corporation; University of Illinois at Urbana-Champaign
Volume
22
Issue
8
fYear
2002
Firstpage
64
Lastpage
64
Abstract
An algorithm that allows a market participant to maximize its individual welfare in electricity spot markets is presented. The use of the algorithm in determining market equilibrium points, called Nash equilibria, is demonstrated. The start of the algorithm is a spot market model that uses the optimal power flow (OPF), with a full representation of the transmission system and inclusion of consumer bidding. The algorithm utilizes price and dispatch sensitivities available from the Hessian matrix and gradient of the OPF to help determine an optimal change in an individual´s bid. The algorithm is shown to be successful in determining local welfare maxima, and the prospects for scaling the algorithm up to realistically sized systems are very good. Nash equilibria are investigated assuming all participants attempt to maximize their individual welfare. This is done by iteratively solving the individual welfare maximization algorithm until all individuals stop modifying their bids.
Keywords
Computational modeling; Electricity supply industry; Iterative algorithms; Power electronics; Power system analysis computing; Power system modeling; Power system simulation; Power system transients; Real time systems; Transient analysis; Nash equilibrium; OPF; Power systems; economics; markets; welfare maximization;
fLanguage
English
Journal_Title
Power Engineering Review, IEEE
Publisher
ieee
ISSN
0272-1724
Type
jour
DOI
10.1109/MPER.2002.4312485
Filename
4312485
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