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Computing generalized Nash equilibria by polynomial programming

Couzoudis, Eleftherios; Renner, Philipp (2013). Computing generalized Nash equilibria by polynomial programming. Mathematical Methods of Operations Research, 77(3):459-472.

Abstract

We present a new way to solve generalized Nash equilibrium problems. We assume the feasible set to be compact. Furthermore all functions are assumed to be polynomials. However we do not impose convexity on either the utility functions or the action sets. The key idea is to use Putinar's Positivstellensatz, a representation result for positive polynomials, to replace each agent's problem by a convex optimization problem. The Nash equilibria are then feasible solutions to a system of polynomial equations and inequalities. Our application is a model of the New Zealand electricity spot market with transmission losses based on a real dataset

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:National licences > 142-005
Dewey Decimal Classification:330 Economics
Scopus Subject Areas:Physical Sciences > Software
Physical Sciences > General Mathematics
Social Sciences & Humanities > Management Science and Operations Research
Language:English
Date:1 June 2013
Deposited On:21 Dec 2018 16:05
Last Modified:23 Feb 2025 04:43
Publisher:Springer
ISSN:1432-2994
OA Status:Green
Publisher DOI:https://doi.org/10.1007/s00186-012-0422-5
Other Identification Number:merlin-id:8762
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  • Content: Published Version
  • Language: English
  • Description: Nationallizenz 142-005

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