4 resultados para data management planning

em Instituto Politécnico do Porto, Portugal


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Projecto apresentado ao Instituto Superior de Contabilidade e Administração do Porto para a obtenção do Grau de Mestre em Assessoria de Administração

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Currently, power systems (PS) already accommodate a substantial penetration of distributed generation (DG) and operate in competitive environments. In the future, as the result of the liberalisation and political regulations, PS will have to deal with large-scale integration of DG and other distributed energy resources (DER), such as storage and provide market agents to ensure a flexible and secure operation. This cannot be done with the traditional PS operational tools used today like the quite restricted information systems Supervisory Control and Data Acquisition (SCADA) [1]. The trend to use the local generation in the active operation of the power system requires new solutions for data management system. The relevant standards have been developed separately in the last few years so there is a need to unify them in order to receive a common and interoperable solution. For the distribution operation the CIM models described in the IEC 61968/70 are especially relevant. In Europe dispersed and renewable energy resources (D&RER) are mostly operated without remote control mechanisms and feed the maximal amount of available power into the grid. To improve the network operation performance the idea of virtual power plants (VPP) will become a reality. In the future power generation of D&RER will be scheduled with a high accuracy. In order to realize VPP decentralized energy management, communication facilities are needed that have standardized interfaces and protocols. IEC 61850 is suitable to serve as a general standard for all communication tasks in power systems [2]. The paper deals with international activities and experiences in the implementation of a new data management and communication concept in the distribution system. The difficulties in the coordination of the inconsistent developed in parallel communication and data management standards - are first addressed in the paper. The upcoming unification work taking into account the growing role of D&RER in the PS is shown. It is possible to overcome the lag in current practical experiences using new tools for creating and maintenance the CIM data and simulation of the IEC 61850 protocol – the prototype of which is presented in the paper –. The origin and the accuracy of the data requirements depend on the data use (e.g. operation or planning) so some remarks concerning the definition of the digital interface incorporated in the merging unit idea from the power utility point of view are presented in the paper too. To summarize some required future work has been identified.

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Environmental management is a complex task. The amount and heterogeneity of the data needed for an environmental decision making tool is overwhelming without adequate database systems and innovative methodologies. As far as data management, data interaction and data processing is concerned we here propose the use of a Geographical Information System (GIS) whilst for the decision making we suggest a Multi-Agent System (MAS) architecture. With the adoption of a GIS we hope to provide a complementary coexistence between heterogeneous data sets, a correct data structure, a good storage capacity and a friendly user’s interface. By choosing a distributed architecture such as a Multi-Agent System, where each agent is a semi-autonomous Expert System with the necessary skills to cooperate with the others in order to solve a given task, we hope to ensure a dynamic problem decomposition and to achieve a better performance compared with standard monolithical architectures. Finally, and in view of the partial, imprecise, and ever changing character of information available for decision making, Belief Revision capabilities are added to the system. Our aim is to present and discuss an intelligent environmental management system capable of suggesting the more appropriate land-use actions based on the existing spatial and non-spatial constraints.

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O presente Relatório de estágio enquadra-se no âmbito da disciplina de Dissertação / Projeto / Estágio, do Curso de Mestrado em Engenharia Civil, do Instituto Superior de Engenharia do Porto subordinado ao tema “Gestão de Obras: Aplicação prática em ambiente empresarial”. O estágio foi realizado na empresa NEGRO S.A., empresa que atua no mercado Francês, no sector da construção civil no âmbito de obras públicas e privadas. Foi com grande satisfação que o estagiário abraçou esta oportunidade de poder realizar um estágio neste setor da engenharia civil, integrando uma equipa de trabalho com uma ampla experiência no mercado. Foi igualmente gratificante poder aplicar os conhecimentos adquiridos ao longo do curso e enriquecedor adquirir novas competências, através da resolução das dificuldades ocorridas no dia-a-dia durante o estágio. Considera-se assim esta experiencia como uma mais-valia para ingressar com êxito na futura vida profissional. Este documento descreve essencialmente as tarefas realizadas ao longo do estágio. Estas tarefas foram executadas recorrendo aos conhecimentos adquiridos durante a formação académica, nomeadamente no que se refere a planeamento, qualidade, gestão de obra e segurança e saúde no trabalho e com finalidade de alcançar os seguintes objetivos: - Proporcionar a integração do aluno no ambiente empresarial, realizando as atividades planeadas; - Propiciar a aplicação dos conhecimentos e competências adquiridas ao longo do curso, utilizando os casos reais durante o estágio; - Resolver problemas concretos de engenharia civil em meio profissional e empresarial; - Proceder a recolha de informação com vista a resolução dos problemas que surgem ao longo do estágio; - Analisar as situações que surgem durante a realização do estágio, estabelecendo conclusões; - Desenvolver metodologias aplicáveis no contexto do estágio; - Recolher dados e interpretar os mesmos no contexto do estágio; - Estabelecer conclusões sobre as experiências vividas durante o estágio; - Analisar o impacto do trabalho realizado na instituição de acolhimento.