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Titlebook: Complementarity Modeling in Energy Markets; Steven A. Gabriel,Antonio J. Conejo,Carlos Ruiz Textbook 2013 Springer Science+Business Media

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書目名稱Complementarity Modeling in Energy Markets
編輯Steven A. Gabriel,Antonio J. Conejo,Carlos Ruiz
視頻videohttp://file.papertrans.cn/232/231288/231288.mp4
概述A very "readable" expository approach appropriated for students, researchers and practitioners.First book to specifically apply complementarity models to energy markets.Gabriel and Conejo are two huge
叢書名稱International Series in Operations Research & Management Science
圖書封面Titlebook: Complementarity Modeling in Energy Markets;  Steven A. Gabriel,Antonio J. Conejo,Carlos Ruiz Textbook 2013 Springer Science+Business Media
描述This addition to the ISOR series introduces complementarity models in a straightforward and approachable manner and uses them to carry out an in-depth analysis of energy markets, including formulation issues and solution techniques. In a nutshell, complementarity models generalize: a. optimization problems via their Karush-Kuhn-Tucker conditions b. on-cooperative games in which each player may be solving a separate but related optimization problem with potentially overall system constraints (e.g., market-clearing conditions) c. conomic and engineering problems that aren’t specifically derived from optimization problems (e.g., spatial price equilibria) d. roblems in which both primal and dual variables (prices) appear in the original formulation (e.g., The National Energy Modeling System (NEMS) or its precursor, PIES). As such, complementarity models are a very general and flexible modeling format. A natural question is why concentrate on energy markets for this complementarity approach? s it turns out, energy or other markets that have game theoretic aspects are best modeled by complementarity problems. The reason is that the traditional perfect competition approach no longer appli
出版日期Textbook 2013
關鍵詞Complementarity Modeling; Decision Making; Energy Markets; Equilibrium; Operations Research
版次1
doihttps://doi.org/10.1007/978-1-4419-6123-5
isbn_softcover978-1-4899-8675-7
isbn_ebook978-1-4419-6123-5Series ISSN 0884-8289 Series E-ISSN 2214-7934
issn_series 0884-8289
copyrightSpringer Science+Business Media New York 2013
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Construction of Deformations of Type o an equivalent complementarity problem. There are sometimes advantages to a VI formulation compared to a complementarity formulation: the complementarity formulation has primal decision variables, and dual variables that arise, e.g., when specifying the KKT conditions of individual agents; but a VI
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Splitting Deformations of Degenerationsilibrium reaction of followers, who in turn naively believe that the leader’s decisions are exogenous and fixed. This chapter introduces a type of mathematical program that is useful for modeling such games when there is more than one leader, and one wants to find an equilibrium among them: Equilibr
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Ralf Deiterding,Stephen W. Pooleorm of the linear complementarity problem (LCP), the nonlinear complementarity problem (NCP) and the variational inequality (VI) problem. We explain the main ideas of the algorithms, but avoid detailed discussions or proofs of important mathematical issues such as the conditions under which an algor
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Splunk User/Power User Exam Settransported by either pipeline in gaseous form or cooled to about -260 degrees F (about -160 degrees C) and then transported as liquefied natural gas (LNG) to destinations around the world. The main consuming sectors that use it are residential, commercial, industrial, electric power, and to some ex
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