135 resultados para Roquette-Pinto


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This paper presents a new methodology for the creation and management of coalitions in Electricity Markets. This approach is tested using the multi-agent market simulator MASCEM, taking advantage of its ability to provide the means to model and simulate VPP (Virtual Power Producers). VPPs are represented as coalitions of agents, with the capability of negotiating both in the market, and internally, with their members, in order to combine and manage their individual specific characteristics and goals, with the strategy and objectives of the VPP itself. The new features include the development of particular individual facilitators to manage the communications amongst the members of each coalition independently from the rest of the simulation, and also the mechanisms for the classification of the agents that are candidates to join the coalition. In addition, a global study on the results of the Iberian Electricity Market is performed, to compare and analyze different approaches for defining consistent and adequate strategies to integrate into the agents of MASCEM. This, combined with the application of learning and prediction techniques provide the agents with the ability to learn and adapt themselves, by adjusting their actions to the continued evolving states of the world they are playing in.

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Electricity markets are complex environments with very particular characteristics. MASCEM is a market simulator developed to allow deep studies of the interactions between the players that take part in the electricity market negotiations. This paper presents a new proposal for the definition of MASCEM players’ strategies to negotiate in the market. The proposed methodology is multiagent based, using reinforcement learning algorithms to provide players with the capabilities to perceive the changes in the environment, while adapting their bids formulation according to their needs, using a set of different techniques that are at their disposal. Each agent has the knowledge about a different method for defining a strategy for playing in the market, the main agent chooses the best among all those, and provides it to the market player that requests, to be used in the market. This paper also presents a methodology to manage the efficiency/effectiveness balance of this method, to guarantee that the degradation of the simulator processing times takes the correct measure.

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The very particular characteristics of electricity markets, require deep studies of the interactions between the involved players. MASCEM is a market simulator developed to allow studying electricity market negotiations. This paper presents a new proposal for the definition of MASCEM players’ strategies to negotiate in the market. The proposed methodology is implemented as a multiagent system, using reinforcement learning algorithms to provide players with the capabilities to perceive the changes in the environment, while adapting their bids formulation according to their needs, using a set of different techniques that are at their disposal. This paper also presents a methodology to define players’ models based on the historic of their past actions, interpreting how their choices are affected by past experience, and competition.

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Negotiation is a fundamental tool for reaching understandings that allow each involved party to gain an advantage for themselves by the end of the process. In recent years, with the increasing of compe-titiveness in most sectors, negotiation procedures become present in practically all of them. One particular environment in which the competitiveness has been increasing exponentially is the electricity markets sector. This work is directed to the study of electricity markets’ partici-pating entities interaction, namely in what concerns the formation, management and operation of aggregating entities – Virtual Power Players (VPPs). VPPs are responsible for managing coalitions of market players with small market negotiating influence, which take strategic advantage in entering such aggregations, to increase their negotiating power. This chapter presents a negotiation methodology for the creation and management of coalitions in Electricity Markets. This approach is tested using MASCEM, taking advantage of its ability to provide the means to model and simulate VPPs. VPPs are represented as coalitions of agents, with the capability of negotiating both in the market, and internally, with their members, in order to combine and manage their individual specific characteristics and goals, with the strategy and objectives of the VPP itself.

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A multilevel negotiation mechanism for operating smart grids and negotiating in electricity markets considers the advantages of virtual power player management.

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This paper presents a new architecture for the MASCEM, a multi-agent electricity market simulator. This is implemented in a Prolog which is integrated in the JAVA program by using the LPA Win-Prolog Intelligence Server (IS) provides a DLL interface between Win-Prolog and other applications. This paper mainly focus on the MASCEM ability to provide the means to model and simulate Virtual Power Producers (VPP). VPPs are represented as a coalition of agents, with specific characteristics and goals. VPPs can reinforce the importance of these generation technologies making them valuable in electricity markets.

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This paper presents MASCEM - a multi-agent based electricity market simulator. MASCEM uses game theory, machine learning techniques, scenario analysis and optimization techniques to model market agents and to provide them with decision-support. This paper mainly focus on the MASCEM ability to provide the means to model and simulate Virtual Power Players (VPP). VPPs are represented as a coalition of agents, with specific characteristics and goals. The paper details some of the most important aspects considered in VPP formation and in the aggregation of new producers and includes a case study based on real data.

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Presently power system operation produces huge volumes of data that is still treated in a very limited way. Knowledge discovery and machine learning can make use of these data resulting in relevant knowledge with very positive impact. In the context of competitive electricity markets these data is of even higher value making clear the trend to make data mining techniques application in power systems more relevant. This paper presents two cases based on real data, showing the importance of the use of data mining for supporting demand response and for supporting player strategic behavior.

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Introdução: No Centro Hospitalar de São João, EPE a partir de 2008, foi implementado o sistema semi-automático de reposição de stocks nivelados de medicamentos, Pyxis®, atualmente implementado em 16 serviços clínicos. Atendendo ao crescimento verificado na implementação deste sistema automatizado na instituição, este trabalho pretende dar a conhecer a realidade de preparação da medicação para reposição no sistema semi-automático Pyxis®, por avaliação do número de unidades de medicamentos repostos diariamente e por dia da semana. Material e Métodos: Desenvolveu-se um estudo longitudinal retrospetivo onde se analisou a totalidade de serviços com implementação Pyxis® através do registo diário de reposição dos diferentes Serviços Clínicos num período de 41 dias consecutivos. Numa segunda fase, os dados foram sintetizados sob a forma de tabelas em Microsoft Office Excel®, tendo posteriormente sido construídos os respetivos gráficos para análise. Resultados: Os resultados, representados graficamente, mostram que a segunda-feira é o dia da semana com maior número de reposições de medicamentos, sendo os serviços com maior número de reposições totais UCI Geral, UCI Neurocríticos, Cirurgia Cardiotorácica e UCIPU. Discussão / Conclusões: Os resultados obtidos permitiram verificar uma sobrecarga de referências de medicamentos e unidades repostas às segundas-feiras, atingindo, em muitos serviços, valores de unidades repostas duas vezes superior à média de reposições do serviço (por ex. UCI Neurocíticos). Contudo, apesar do reduzido período de análise, os dados parecem evidenciar que o facto de haver reposições ao domingo agiliza o processo de reposição dos Pyxis® às segundas-feiras.

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Embora a palavra interculturalidade seja recente, a sua prática não o é. Sabemos através da arqueologia, da história e de outras ciências, que o contacto entre povos com culturas diferentes data de há muitos milénios, pois as provas que têm sido encontradas assim o testemunham. Entre os muitos exemplos, podemos referir que foram descobertos no Egito artefactos de origem Síria datados do 5º milénio a.C.; em Israel, encontraram-se fragmentos de cerâmica com símbolos egípcios datados do 3º milénio a.C.; e existem provas de que 1600 anos a.C., estanho proveniente da atual Grã-Bretanha era comercializado em vários locais do continente Europeu

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Esta recolha de recursos ‘em linha’ irá incidir sobre as seguintes áreas: 1) Dicionários e Glossários; 2) Sítios sobre Tradução; 3) Oportunidades de Emprego; 4) Directórios; 5) Outras hiperligações.

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A Administração Pública, em sentido orgânico ou subjectivo, pode ser definida como o conjunto de órgãos, serviços e agentes do Estados e demais pessoas colectivas públicas e seus funcionários, que asseguram, em nome da colectividade, a satisfação regular e contínua das necessidades colectivas de segurança, cultura, bem estar e progresso.

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Existe uma grande diversidade de planos administrativos, como os planos económicos ou os planos de desenvolvimento económico e social. Os planos territoriais, objecto do presente trabalho, disciplinam as regras de ocupação, uso e transformação dos solos e constituem factor de previsibilidade das decisões administrativas.

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"O Estado actua através dos titulares dos seus órgãos, dos seus funcionários e dos seus agentes. Quando estes últimos, no exercício das suas funções e por causa desse exercício, lesam outras pessoas, a lei prevê que o Estado, sozinho ou solidariamente com os autores das acções e das omissões causadoras dos danos, possa ser condenado a indemnizar os lesados"