DocumentCode
892892
Title
Finding multiperiod Nash equilibria in pool-based electricity markets
Author
De la Torre, Sebastián ; Contreras, Javier ; Conejo, Antonio J.
Author_Institution
Univ. de Castilla-La Mancha, Ciudad Real, Spain
Volume
19
Issue
1
fYear
2004
Firstpage
643
Lastpage
651
Abstract
Pool-based electricity markets can be simulated with various degrees of accuracy. When compared to actual markets, most of the simulators produce outcomes than cannot be extrapolated beyond the specific scenario analyzed. This is most critical for regulators and market participants which need tools to analyze market power and bidding strategies, respectively, for a broad range of scenarios. Both objectives can be tackled if the possible equilibria of a pool-based multiperiod market are determined. This paper presents a three-step methodology to find these equilibria. First, a detailed model of an electricity market is presented, considering multiperiod bidding, price elasticity, and network modeling. Second, an iterative simulation process is run to detect participants´ bidding strategies implicit in the optimized production resulting from the simulation. Finally, output data from the simulator are analyzed to obtain Nash equilibria. Iterated deletion is used in the last step to remove strategies that are dominated by others that generate higher profits. A realistic case study illustrates the proposed technique.
Keywords
game theory; iterative methods; optimisation; power markets; bidding strategies; electricity market model; game theory; iterated deletion; iterative simulation process; market power; multiperiod Nash equilibria; multiperiod bidding; network modeling; optimized production; pool-based electricity market; price elasticity; Analytical models; Cost function; Elasticity; Electricity supply industry; Nash equilibrium; Power generation; Power markets; Power system simulation; Production; Regulators;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2003.820703
Filename
1266624
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