916 resultados para Eletric power systems Protection


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A análise de ocorrências no sistema de energia elétrica é de fundamento mportância para uma operação segura, e para manter a qualidade da energia elétrica lornecida aos consumidores. As concessionárias do setor de energia elétrica usam equipamentos, chamados registradores de perturbação (RP's), para monitora diagnosticar problemas nos sistemas elétrico e de proteção. As formas de onda normalmente analisadas nos centros de operação das concessionárias, são aquelas geradas por eventos que quase sempre causam a aocrtul je linhas devido a operação dos relés comandados pelos dispositivos de proteção .Contudo, uma grande quantidade de registros armazenados que podem conte informações importantes sobre o comportamento e desempenho do sistema elétricl jeixa de ser analisada. O objetivo desse trabalho é usar os dados disponíveis nos centros de ontrole, operação das concessionárias de energia elétrica obtidos pelos RP's, para classificar e quantificar de forma automática sinais que caracterizem problemas de qualidade da energia, quanto a variações de tensão de curta duração: afundamentos, elevações e interrupções. O método proposto usa a transformada wavelet para obter um vetor característico para as tensões das fases A, B e C, e uma rede neural probabilística para classificação. Os sinais classificados como apresentando variações de curta duração são quantilicados quanto a duração e amplitude, usando-se as propriedades da análise nultiresolução da decomposição do sinal. Esses parâmetros, então, irão formar uma Jase de dados onde procedimentos de análise estatística podem ser usados para gerar relatórios com as características da qualidade da energia. Os resultados obtidos com a metodologia proposta para um sistema real são também apresentados.

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The hydroelectric power plant Hidroltuango represents a major expansion for the Colombian electrical system (with a total capacity of 2400 MW). This paper analyzes the possible interconnections and investments involved in connecting Hidroltuango, in order to strengthen the Colombian national transmission system. A Mixed Binary Linear Programming (MBLP) model was used to solve the Multistage Transmission Network Expansion Planning (MTEP) problem of the Colombian electrical system, taking the N-1 safety criterion into account. The N-1 safety criterion indicates that the transmission system must be expanded so that the system will continue to operate properly if an outage in a system element (within a pre-defined set of contingencies) occurs. The use of a MBLP model guaranteed the convergence with existing classical optimization methods and the optimal solution for the MTEP using commercial solvers. Multiple scenarios for generation and demand were used to consider uncertainties within these parameters. The model was implemented using the algebraic modeling language AMPL and solved using the commercial solver CPLEX. The proposed model was then applied to the Colombian electrical system using the planning horizon of 2018-2025. (C) 2014 Elsevier B.V. All rights reserved.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Electric power distribution systems, and particularly those with overhead circuits, operate radially but as the topology of the systems is meshed, therefore a set of circuits needs to be disconnected. In this context the problem of optimal reconfiguration of a distribution system is formulated with the goal of finding a radial topology for the operation of the system. This paper utilizes experimental tests and preliminary theoretical analysis to show that radial topology is one of the worst topologies to use if the goal is to minimize power losses in a power distribution system. For this reason, it is important to initiate a theoretical and practical discussion on whether it is worthwhile to operate a distribution system in a radial form. This topic is becoming increasingly important within the modern operation of electrical systems, which requires them to operate as efficiently as possible, utilizing all available resources to improve and optimize the operation of electric power systems. Experimental tests demonstrate the importance of this issue. (C) 2014 Elsevier Ltd. All rights reserved.

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A new approach called the Modified Barrier Lagrangian Function (MBLF) to solve the Optimal Reactive Power Flow problem is presented. In this approach, the inequality constraints are treated by the Modified Barrier Function (MBF) method, which has a finite convergence property: i.e. the optimal solution in the MBF method can actually be in the bound of the feasible set. Hence, the inequality constraints can be precisely equal to zero. Another property of the MBF method is that the barrier parameter does not need to be driven to zero to attain the solution. Therefore, the conditioning of the involved Hessian matrix is greatly enhanced. In order to show this, a comparative analysis of the numeric conditioning of the Hessian matrix of the MBLF approach, by the decomposition in singular values, is carried out. The feasibility of the proposed approach is also demonstrated with comparative tests to Interior Point Method (IPM) using various IEEE test systems and two networks derived from Brazilian generation/transmission system. The results show that the MBLF method is computationally more attractive than the IPM in terms of speed, number of iterations and numerical conditioning. (C) 2011 Elsevier B.V. All rights reserved.

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In this paper, a new algebraic-graph method for identification of islanding in power system grids is proposed. The proposed method identifies all the possible cases of islanding, due to the loss of a equipment, by means of a factorization of the bus-branch incidence matrix. The main features of this new method include: (i) simple implementation, (ii) high speed, (iii) real-time adaptability, (iv) identification of all islanding cases and (v) identification of the buses that compose each island in case of island formation. The method was successfully tested on large-scale systems such as the reduced south Brazilian system (45 buses/72 branches) and the south-southeast Brazilian system (810 buses/1340 branches). (C) 2011 Elsevier Ltd. All rights reserved.