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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

[pt] EQUILÍBRIOS DE NASH EM MERCADOS ELÉTRICOS COM FUNÇÕES DE OFERTA QUADRÁTICAS COTADAS / [en] NASH EQUILIBRIA IN POOL-BASED ELECTRICITY MARKETS WITH BOUNDED QUADRATIC SUPPLY FUNCTIONS

MARCELO MORAES RESENDE 20 June 2023 (has links)
[pt] Este trabalho analisa um mercado de eletricidade em que os geradores declaram funções de custo quadráticas para o operador da rede e também suas disponibilidades máximas de produção. O operador, então, determina as quantidades a serem produzidas por cada gerador de modo a atender a uma demanda inelástica, ao menor custo possível. Estabelecem-se alguns resultados que permitem computar os equilíbrios de Nash deste modelo e descrevem-se algumas de suas propriedades, tais como condições de existência. / [en] This work analyzes an electricity market in which generators declare quadratic cost functions for the grid operator and also the maximum capacity available. The operator then determines the quantities that each generator must produce to meet an inelastic demand at the lowest possible cost. Some results are established that allow computing the Nash equilibria of this model and some of their properties are described, such as existence conditions.
12

Game theoretical characterization of the multi-agent network expansion game

Caye, Flore 04 1900 (has links)
Dans les chaînes d’approvisionnement, les producteurs font souvent appel à des entreprises de transport pour livrer leurs marchandises. Cela peut entraîner une concurrence entre les transporteurs qui cherchent à maximiser leurs revenus individuels en desservant un produc- teur. Dans ce travail, nous considérons de telles situations où aucun transporteur ne peut garantir la livraison de la source à la destination en raison de son activité dans une région restreinte (par exemple, une province) ou de la flotte de transport disponible (par exemple, uniquement le transport aérien), pour ne citer que quelques exemples. La concurrence est donc liée à l’expansion de la capacité de transport des transporteurs. Le problème décrit ci-dessus motive l’étude du jeu d’expansion de réseau multi-agent joué sur un réseau appartenant à de multiples transporteurs qui choisissent la capacité de leurs arcs. Simultanément, un client cherche à maximiser le flux qui passe par le réseau en décidant de la politique de partage qui récompense chacun des transporteurs. Le but est de déterminer un équilibre de Nash pour le jeu, en d’autres termes, la strategie d’extension de capacité et de partage la plus rationnelle pour les transporteurs et le client, respectivement. Nous rappelons la formulation basée sur les arcs proposée dans la littérature, dont la solution est l’équilibre de Nash avec le plus grand flux, et nous identifions ses limites. Ensuite, nous formalisons le concept de chemin profitable croissant et nous montrons son utilisation pour établir les conditions nécessaires et suffisantes pour qu’un vecteur de stratégies soit un équilibre de Nash. Ceci nous conduit à la nouvelle formulation basée sur le chemin. Enfin, nous proposons un renforcement du modèle basé sur les arcs et une formulation hybride arc- chemin. Nos résultats expérimentaux soutiennent la valeur des nouvelles inégalités valides obtenues à partir de notre caractérisation des équilibres de Nash avec des chemins croissants rentables. Nous concluons ce travail avec les futures directions de recherche pavées par les contributions de cette thèse. / In supply chains, manufacturers often use transportation companies to deliver their goods. This can lead to competition among carriers seeking to maximize their individual revenues by serving a manufacturer. In this work, we consider such situations where no single carrier can guarantee delivery from source to destination due to its operation in a restricted region (e.g., a province) or the available transportation fleet (e.g., only air transportation), to name a few examples. Therefore, competition is linked to the expansion of transportation capacity by carriers. The problem described above motivates the study of the multi-agent network expansion game played over a network owned by multiple transporters who choose their arcs’ capacity. Simultaneously, a customer seeks to maximize the flow that goes through the network by deciding the sharing policy rewarding each of the transporters. The goal is to determine a Nash equilibrium for the game, in simple words, the most rational capacity expansion and sharing policy for the transporters and the customer, respectively. We recap the arc-based formulation proposed in literature, whose solution is the Nash equilibirum with the largest flow, and we identify its limitations. Then, we formalize the concept of profitable increasing path and we show its use to establish necessary and sufficient conditions for a vector of strategies to be a Nash equilibrium. This lead us to the first path-based formulation. Finally, we propose a strengthening for the arc-based model and a hybrid arc-path formulation. Our experimental results support the value of the new valid inequalities obtained from our characterization of Nash equilibria with profitable increasing paths. We conclude this work with the future research directions paved by the contributions of this thesis.

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