109 resultados para Liberal energy market
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The case of desktop Operating System and Office Suite choices considering Proprietary and Open Source Software alternatives.
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Dissertação para obtenção do grau de Mestre em Engenharia Electrotécnica
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Mecânica
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia com a Especialidade em Energia, Climatização e Refrigeração
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Dissertação para obtenção do grau de Mestre em Engenharia Electrotécnica Ramo Energia
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Dissertação para a obtenção do grau de Mestre em Engenharia Electrotécnica Ramo de Energia/Automação e Eletrónica Industrial
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Dissertação para a obtenção do grau de Mestre em Engenharia Electrotécnica - Ramo de Energia
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Dissertação para obtenção do grau de Mestre em Engenharia Electrotécnica Ramo de Energia
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O trabalho de projecto desenvolvido tem por objectivo a análise dos resultados obtidos na verificação térmica de edifícios aquando da utilização de programas de cálculo automático. Para o efeito, foram escolhidos dois edifícios unifamiliares com características distintas, tentando que fossem abrangidas o máximo de situações diferentes. Neste projecto foram avaliados sobretudo dois aspectos: quantificação das áreas e desenvolvimentos dos elementos da envolvente dos edifícios em estudo e cálculo dos coeficientes de transmissão térmica superficial e linear dos elementos construtivos. Com base neste trabalho, pode-se promover uma melhoria dos programas de cálculo automático no mercado, de modo a assegurar uma maior qualidade dos projectos de edifícios e consequente reflexo na qualidade da construção civil futura. Por último, apresentam-se as conclusões e possibilidades de desenvolvimento de trabalhos futuros.
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Civil
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Dissertação para obtenção do grau de Mestre em Engenharia Electrotécnica Ramo de Energia
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This paper presents a distributed predictive control methodology for indoor thermal comfort that optimizes the consumption of a limited shared energy resource using an integrated demand-side management approach that involves a power price auction and an appliance loads allocation scheme. The control objective for each subsystem (house or building) aims to minimize the energy cost while maintaining the indoor temperature inside comfort limits. In a distributed coordinated multi-agent ecosystem, each house or building control agent achieves its objectives while sharing, among them, the available energy through the introduction of particular coupling constraints in their underlying optimization problem. Coordination is maintained by a daily green energy auction bring in a demand-side management approach. Also the implemented distributed MPC algorithm is described and validated with simulation studies.
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Traditional vertically integrated power utilities around the world have evolved from monopoly structures to open markets that promote competition among suppliers and provide consumers with a choice of services. Market forces drive the price of electricity and reduce the net cost through increased competition. Electricity can be traded in both organized markets or using forward bilateral contracts. This article focuses on bilateral contracts and describes some important features of an agent-based system for bilateral trading in competitive markets. Special attention is devoted to the negotiation process, demand response in bilateral contracting, and risk management. The article also presents a case study on forward bilateral contracting: a retailer agent and a customer agent negotiate a 24h-rate tariff. © 2014 IEEE.
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The electricity industry throughout the world, which has long been dominated by vertically integrated utilities, has experienced major changes. Deregulation, unbundling, wholesale and retail wheeling, and real-time pricing were abstract concepts a few years ago. Today market forces drive the price of electricity and reduce the net cost through increased competition. As power markets continue to evolve, there is a growing need for advanced modeling approaches. This article addresses the challenge of maximizing the profit (or return) of power producers through the optimization of their share of customers. Power producers have fixed production marginal costs and decide the quantity of energy to sell in both day-ahead markets and a set of target clients, by negotiating bilateral contracts involving a three-rate tariff. Producers sell energy by considering the prices of a reference week and five different types of clients with specific load profiles. They analyze several tariffs and determine the best share of customers, i.e., the share that maximizes profit. © 2014 IEEE.
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This paper is on the maximization of total profit in a day-ahead market for a price-taker producer needing a short-term scheduling for wind power plants coordination with concentrated solar power plants, having thermal energy storage systems. The optimization approach proposed for the maximization of profit is a mixed-integer linear programming problem. The approach considers not only transmission grid constraints, but also technical operating constraints on both wind and concentrated solar power plants. Then, an improved short-term scheduling coordination is provided due to the more accurate modelling presented in this paper. Computer simulation results based on data for the Iberian wind and concentrated solar power plants illustrate the coordination benefits and show the effectiveness of the approach.