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Generalized Nash equilibrium problems, bilevel programming and mpec

The book discusses three classes of problems: the generalized Nash equilibrium problems, the bilevel problems and the mathematical programming with equilibrium constraints (MPEC). These problems interact through their mathematical analysis as well as their applications. The primary aim of the book i...

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Detalles Bibliográficos
Autores principales: Aussel, Didier, Lalitha, CS
Lenguaje:eng
Publicado: Springer 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-981-10-4774-9
http://cds.cern.ch/record/2316189
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author Aussel, Didier
Lalitha, CS
author_facet Aussel, Didier
Lalitha, CS
author_sort Aussel, Didier
collection CERN
description The book discusses three classes of problems: the generalized Nash equilibrium problems, the bilevel problems and the mathematical programming with equilibrium constraints (MPEC). These problems interact through their mathematical analysis as well as their applications. The primary aim of the book is to present the modern tool of variational analysis and optimization, which are used to analyze these three classes of problems. All contributing authors are respected academicians, scientists and researchers from around the globe. These contributions are based on the lectures delivered by experts at CIMPA School, held at the University of Delhi, India, from 25 November–6 December 2013, and peer-reviewed by international experts. The book contains five chapters. Chapter 1 deals with nonsmooth, nonconvex bilevel optimization problems whose feasible set is described by using the graph of the solution set mapping of a parametric optimization problem. Chapter 2 describes a constraint qualification to MPECs considered as an application of calmness concept of multifunctions and is used to derive M-stationarity conditions for MPEC. Chapter 3 discusses the first- and second-order optimality conditions derived for a special case of a bilevel optimization problem in which the constraint set of the lower level problem is described as a general compact convex set. Chapter 4 concentrates the results of the modelization and analysis of deregulated electricity markets with a focus on auctions and mechanism design. Chapter 5 focuses on optimization approaches called reflection methods for protein conformation determination within the framework of matrix completion. The last chapter (Chap. 6) deals with the single-valuedness of quasimonotone maps by using the concept of single-directionality with a special focus on the case of the normal operator of lower semi-continuous quasiconvex functions.
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spelling cern-23161892021-04-21T18:51:02Zdoi:10.1007/978-981-10-4774-9http://cds.cern.ch/record/2316189engAussel, DidierLalitha, CSGeneralized Nash equilibrium problems, bilevel programming and mpecMathematical Physics and MathematicsThe book discusses three classes of problems: the generalized Nash equilibrium problems, the bilevel problems and the mathematical programming with equilibrium constraints (MPEC). These problems interact through their mathematical analysis as well as their applications. The primary aim of the book is to present the modern tool of variational analysis and optimization, which are used to analyze these three classes of problems. All contributing authors are respected academicians, scientists and researchers from around the globe. These contributions are based on the lectures delivered by experts at CIMPA School, held at the University of Delhi, India, from 25 November–6 December 2013, and peer-reviewed by international experts. The book contains five chapters. Chapter 1 deals with nonsmooth, nonconvex bilevel optimization problems whose feasible set is described by using the graph of the solution set mapping of a parametric optimization problem. Chapter 2 describes a constraint qualification to MPECs considered as an application of calmness concept of multifunctions and is used to derive M-stationarity conditions for MPEC. Chapter 3 discusses the first- and second-order optimality conditions derived for a special case of a bilevel optimization problem in which the constraint set of the lower level problem is described as a general compact convex set. Chapter 4 concentrates the results of the modelization and analysis of deregulated electricity markets with a focus on auctions and mechanism design. Chapter 5 focuses on optimization approaches called reflection methods for protein conformation determination within the framework of matrix completion. The last chapter (Chap. 6) deals with the single-valuedness of quasimonotone maps by using the concept of single-directionality with a special focus on the case of the normal operator of lower semi-continuous quasiconvex functions.Springeroai:cds.cern.ch:23161892017
spellingShingle Mathematical Physics and Mathematics
Aussel, Didier
Lalitha, CS
Generalized Nash equilibrium problems, bilevel programming and mpec
title Generalized Nash equilibrium problems, bilevel programming and mpec
title_full Generalized Nash equilibrium problems, bilevel programming and mpec
title_fullStr Generalized Nash equilibrium problems, bilevel programming and mpec
title_full_unstemmed Generalized Nash equilibrium problems, bilevel programming and mpec
title_short Generalized Nash equilibrium problems, bilevel programming and mpec
title_sort generalized nash equilibrium problems, bilevel programming and mpec
topic Mathematical Physics and Mathematics
url https://dx.doi.org/10.1007/978-981-10-4774-9
http://cds.cern.ch/record/2316189
work_keys_str_mv AT ausseldidier generalizednashequilibriumproblemsbilevelprogrammingandmpec
AT lalithacs generalizednashequilibriumproblemsbilevelprogrammingandmpec