dc.creatorDa Costa E.C.M.
dc.creatorKurokawa S.
dc.creatorDo Prado A.J.
dc.creatorPissolato J.
dc.date2011
dc.date2015-06-30T20:37:28Z
dc.date2015-11-26T14:52:09Z
dc.date2015-06-30T20:37:28Z
dc.date2015-11-26T14:52:09Z
dc.date.accessioned2018-03-28T22:04:10Z
dc.date.available2018-03-28T22:04:10Z
dc.identifier
dc.identifierInternational Journal Of Electrical Power And Energy Systems. , v. 33, n. 8, p. 1375 - 1383, 2011.
dc.identifier1420615
dc.identifier10.1016/j.ijepes.2011.06.015
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-80051544219&partnerID=40&md5=30695958e6282d687bcc23ba31f09074
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/108671
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/108671
dc.identifier2-s2.0-80051544219
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1254750
dc.descriptionThis article shows a transmission line model for simulation of fast and slow transients, applied to symmetrical or asymmetrical configurations. A transmission line model is developed based on lumped elements representation and state-space techniques. The proposed methodology represents a practical procedure to model three-phase transmission lines directly in time domain, without the explicit or implicit use of inverse transforms. In three-phase representation, analysis modal techniques are applied to decouple the phases in their respective propagation modes, using a correction procedure to set a real and constant matrix for untransposed lines with or without vertical symmetry plane. The proposed methodology takes into account the frequency-dependent parameters of the line and in order to include this effect in the state matrices, a fitting procedure is applied. To verify the accuracy of the proposed state-space model in frequency domain, a simple methodology is described based on line distributed parameters and transfer function associated with input/output signals of the lumped parameters representation. In addition, this article proposes the use of a fast and robust integration procedure to solve the state equations, enabling transient and steady-state simulations. The results obtained by the proposed methodology are compared with several established transmission line models in EMTP, taking into account an asymmetrical three-phase transmission line. The principal contribution of the proposed methodology is to handle a steady fundamental signal mixed with fast and slow transients, including impulsive and oscillatory behavior, by a practical procedure applied directly in time domain for symmetrical or asymmetrical representations. © 2011 Elsevier Ltd. All rights reserved.
dc.description33
dc.description8
dc.description1375
dc.description1383
dc.descriptionMacias, J.A.R., Exposito, A.G., Soler, A.B., A comparison of techniques for state-space transient analysis of transmission lines (2005) IEEE Transactions on Power Delivery, 20 (2), pp. 894-903. , DOI 10.1109/TPWRD.2005.844271
dc.descriptionMamis, M.S., Computation of electromagnetic transients on transmission lines with nonlinear components (2003) IEE Proc Gener Transm Distrib, 150 (2), pp. 200-204
dc.descriptionMamis, M.S., Meral, M.E., State-space modeling and analysis of fault arcs (2005) Electric Power Systems Research, 76 (1-3), pp. 46-51. , DOI 10.1016/j.epsr.2005.04.002, PII S0378779605001355
dc.descriptionMamis, M.S., State-space transient analysis of single-phase transmission lines with corona (2003) Proceedings of the International Conference on Power Systems Transients - IPST'03, pp. 1-5. , New Orleans, Lousiana, USA
dc.descriptionSeptember
dc.descriptionMamis, M.S., Nacaroglu, A., Transient voltage and current distributions on transmission lines (2002) IEE Proc Gener Transm Distrib, 149 (6), pp. 705-712
dc.descriptionMoreno, P., Gómez, P., Nareno, J.L., Guardado, J.L., Frequency domain transient analysis of electrical networks including non-linear conditions (2005) Int J Electr Power Energy Syst, 27 (2), pp. 139-156
dc.descriptionCampos, J.C.C., Pissolato, J., Prado, A.J., Kurokawa, S., Single real transformation matrices applied to double three-phase transmission lines (2008) Electr Power Syst Res, 78 (1), pp. 1719-1725
dc.descriptionKurokawa, S., Yamanaka, F.N.R., Prado, J.A., Pissolato, J., Inclusion of the frequency effect in the lumped parameters transmission line model: State space formulation (2009) Electr Power Syst Res, 79 (7), pp. 1155-1163
dc.descriptionPrado, A.J., Kurokawa, S., Pissolato, J., Bovolato, L.F., Step by step analyses of Clarke's matrix correction procedure for untransposed three-phase transmission line cases (2010) Proceedings of IEEE General Meeting. Minneapolis, Minnesota, USA, pp. 1-9. , July
dc.descriptionMarti, J.R., Accurate modeling of frequency-dependent transmission lines in electromagnetic transient simulations (1982) IEEE Trans on Power Apparat Syst, 101 (1), pp. 147-155. , PAS-
dc.descriptionDommel, H.W., (1989) Electromagnetic Transients Program Reference Manual (EMTP Theory Book), , University of British Columbia: Vancouver, Canada, Department of Electrical Engineering
dc.descriptionMingli, W., Yu, F., Numerical calculations of internal impedance of solid and tubular cylindrical conductors under large parameters (2004) IEE Proc Gener Transm Distrib, 151 (1), pp. 67-72
dc.descriptionSarto, M.S., Scarlatti, A., Holloway, C.L., On the use of fitting models for the time-domain analysis on problems with frequency-dependent parameters (2001) Proceedings of IEEE International Symposium on Electromagnetic Compatibility, pp. 13-17. , Montreal, Quebec, Canada
dc.descriptionAugust
dc.descriptionGustavsen, B., Semlyen, A., Rational approximation of frequency domain response by vector fitting (1999) IEEE Trans on Power Delivery, 14 (3), pp. 1052-1061
dc.descriptionGómez, P., Uribe, F.A., The numerical Laplace transform: An accurate technique for analysing of electromagnetic transients on power system devices (2009) Int J Electr Power Energy Syst, 31 (23), pp. 116-123
dc.descriptionWedepohl, L.M., Nguyen, H.V., Frequency-dependent transformation matrices for untransposed transmission lines using newton-raphson method (1996) IEEE Transactions on Power Systems, 11 (3), pp. 1538-1546
dc.descriptionBudner, A., Introduction of frequency-dependent line parameters into an electromagnetic transients program (1970) IEEE Trans on Power Apparat Syst, 89 (1), pp. 88-97
dc.descriptionNoda, T., Nagaoka, N., Ametani, A., Phase domain modelling of frequency-dependent transmission lines by means of an ARMA model (1996) IEEE Trans Power Delivery, 11 (1), pp. 401-411
dc.descriptionTavares, M.C., Pissolato, J., Portela, C.M., New multiphase mode domain transmission line model (1999) International Journal of Electrical Power and Energy Systems, 21 (8), pp. 585-601. , PII S014206159900023X
dc.descriptionFaria, J.A.B., Mendez, J.B., Modal analysis of untransposed bilateral three-phase lines - A perturbation approach (1997) IEEE Trans Power Delivery, 12 (1)
dc.descriptionKurokawa, S., Filho, J.P., Tavares, M.C., Portela, C.M., Prado, A.J., Behavior of overhead transmission line parameters on the presence of ground wires (2005) IEEE Transactions on Power Delivery, 20 (2), pp. 1669-1676. , DOI 10.1109/TPWRD.2004.833916
dc.descriptionGustavsen, B., Validation of frequency-dependent transmission line models (2005) IEEE Transactions on Power Delivery, 20 (2), pp. 925-933. , DOI 10.1109/TPWRD.2004.837676
dc.languageen
dc.publisher
dc.relationInternational Journal of Electrical Power and Energy Systems
dc.rightsfechado
dc.sourceScopus
dc.titleProposal Of An Alternative Transmission Line Model For Symmetrical And Asymmetrical Configurations
dc.typeArtículos de revistas


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