991 resultados para Electrical distribution feeders


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Pós-graduação em Engenharia Elétrica - FEIS

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Este trabalho tem como objetivo a gestão eficiente da manutenção em transformadores, que se encontram operando na rede elétrica de distribuição, permitindo ações efetivas que preservem a qualidade de energia entregue ao consumidor, procurando atender deste modo os critérios estabelecidos pelo PRODIST – Procedimentos de Distribuição de Energia Elétrica no Sistema Elétrico Nacional. O método aplicado para atingir este objetivo é a criação de um sistema de informações, que permita ao gestor da área de manutenção da distribuição de uma rede elétrica, tomar decisões considerando as interrupções ocorridas, o impacto que causaram no valor do FEC - Freqüência Equivalente de Interrupção por Unidade Consumidora e no carregamento dos transformadores. Entende-se que com isso as medidas mitigadoras serão tomadas em tempo hábil, podendo preservar a qualidade do fornecimento.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Engenharia Elétrica - FEIS

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Pós-graduação em Engenharia Elétrica - FEIS

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Pós-graduação em Engenharia Elétrica - FEIS

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Introduction. From freedom to bondage, by H. Spencer.--The impracticability of socialism, by E. S. Robertson.--The limits of liberty, by W. Donisthorpe.--Liberty for labour, by G. Howell.--State socialism in the Antipodes, by C. Fairfield.--The discontent of the working-classes, by E. Vincent.--Investment, by T. Mackay.--Free education, by B. H. Alford.--The housing of the working-classes and of the poor, by A. Raffalovich.--The evils of state trading as illustrated by the Post Office, by F. Millar.--Free libraries, by M. D. O'Brien.--The State and electrical distribution, by F. W. Beauchamp Gordon.--True line of deliverance, by A. Herbert.

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Combinatorial optimization is a complex engineering subject. Although formulation often depends on the nature of problems that differs from their setup, design, constraints, and implications, establishing a unifying framework is essential. This dissertation investigates the unique features of three important optimization problems that can span from small-scale design automation to large-scale power system planning: (1) Feeder remote terminal unit (FRTU) planning strategy by considering the cybersecurity of secondary distribution network in electrical distribution grid, (2) physical-level synthesis for microfluidic lab-on-a-chip, and (3) discrete gate sizing in very-large-scale integration (VLSI) circuit. First, an optimization technique by cross entropy is proposed to handle FRTU deployment in primary network considering cybersecurity of secondary distribution network. While it is constrained by monetary budget on the number of deployed FRTUs, the proposed algorithm identi?es pivotal locations of a distribution feeder to install the FRTUs in different time horizons. Then, multi-scale optimization techniques are proposed for digital micro?uidic lab-on-a-chip physical level synthesis. The proposed techniques handle the variation-aware lab-on-a-chip placement and routing co-design while satisfying all constraints, and considering contamination and defect. Last, the first fully polynomial time approximation scheme (FPTAS) is proposed for the delay driven discrete gate sizing problem, which explores the theoretical view since the existing works are heuristics with no performance guarantee. The intellectual contribution of the proposed methods establishes a novel paradigm bridging the gaps between professional communities.

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Recent advances in energy technology generation and new directions in electricity regulation have made distributed generation (DG) more widespread, with consequent significant impacts on the operational characteristics of distribution networks. For this reason, new methods for identifying such impacts are needed, together with research and development of new tools and resources to maintain and facilitate continued expansion towards DG. This paper presents a study aimed at determining appropriate DG sites for distribution systems. The main considerations which determine DG sites are also presented, together with an account of the advantages gained from correct DG placement. The paper intends to define some quantitative and qualitative parameters evaluated by Digsilent (R), GARP3 (R) and DSA-GD software. A multi-objective approach based on the Bellman-Zadeh algorithm and fuzzy logic is used to determine appropriate DG sites. The study also aims to find acceptable DG locations both for distribution system feeders, as well as for nodes inside a given feeder. (C) 2010 Elsevier Ltd. All rights reserved.