DocumentCode
1207577
Title
Sensitivity-based security-constrained OPF market clearing model
Author
Milano, Federico ; Cañizares, Claudio A. ; Conejo, Antonio J.
Author_Institution
Dept. of Electr. Eng., Univ. of Castila-La Mancha, Ciudad Real
Volume
20
Issue
4
fYear
2005
Firstpage
2051
Lastpage
2060
Abstract
This paper proposes a novel technique for representing system security constraints that properly include voltage stability limits in the operation of competitive electricity markets. The market-clearing algorithm is modeled as a voltage stability constrained optimal power flow (OPF) problem, while the distance to the closest critical power flow solution is represented by means of a loading parameter and evaluated using a continuation power flow (CPF) technique. Sensitivities obtained at the OPF step are used to estimate power directions for the CPF method, while the CPF analysis provides the loading parameter to be used in the OPF problem based on an N-1 contingency criterion. The OPF and the CPF steps are repeated until the maximum loading parameter is found, thus providing optimal solutions considering both proper market conditions and security margins. Two benchmark systems with both supply and demand bidding are used to illustrate and test the proposed technique
Keywords
load flow; power markets; power system security; power system stability; sensitivity; supply and demand; CPF; N-1 contingency criterion; OPF; continuation power flow; market clearing model; maximum loading parameter; optimal power flow; sensitivity-based security-constraints; supply and demand bidding; voltage stability limits; Cost function; Electricity supply industry; Lagrangian functions; Load flow; Power system modeling; Power system reliability; Power system security; Power system stability; Pricing; Voltage; Continuation power flow (CPF); electric energy markets; optimal power flow (OPF); security; sensitivity analysis; voltage stability;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2005.856985
Filename
1525136
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