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LITERATURA / REFERENCES[1] CIPCIGAN, L., XU, W., DINAVAHI, V., A New Technique to Mitigate Inrush Current Caused by TransformerEnergization, IEEE PES, Summer Meeting, July 2002, Vol. 1[2] LIN, C. E., CHENG, C. L., HUANG, C. L., YEH, J. C., Investigation of Magnetizing Inrush Current inTransformers: Part II ∑ Harmonic Analysis, IEEE Transaction on Power Delivery, Vol. 8, No. 1, January1993[3] YABE, K., Power Differential Method for Discrimination Between Fault and Magnetizing Inrush Currentin Transformers, IEEE Transaction on Power Delivery, Vol. 12, No. 3, July 1997[4] KITAYAMA, M., NAKABAYASHI, M., A New Approach to Fast Inrush Current Discrimination Based onTransformer Magnetizing Characteristics, 14 th PSCC Conference, Sevilla, June 2003[5] MAO, P. L., AGGARWAL, R. K., A Novel Approach to the Classification of the Transient Phenomenain Power Transformers Using Combined Wavelet Transform and Neural Network, IEEE Transaction onPower Delivery, Vol. 16, No. 4, October 2001[6] LIN, X., LIU, P., MALIK, O. P., Studies for Identification of the Inrush Based on Improved CorrelationAlgorithm, IEEE Transaction on Power Delivery, Vol. 17, No. 4, October 2002[7] RIOUAL, M., SICRE, C., DRISS, K. B., Special Methods for the Calculation of Temporary OvervoltagesDue to Transformer Saturation, IEEE PES, Winter Meeting, January 2001, Vol. 2[8] SCHEI, A., EKSTROM, A., Stresses on Metal Oxide Surge Arresters in HVAC Systems by Temporaryand Transient Overvoltages and Related Tests, International Conference on Large HV Electrical Systems,Paris, 1986[9] BAR, R. A., PLATT, D., Modelling and Mapping Ferroresonant States in Series Compensated Distributionand Subtransmission Lines, IEEE Transactions on Power Delivery, Vol. 11, No. 2, April 1996[10] EMIN, Z., AL ZAHAWI, B. A. T., TONG, Y. K., Voltage Transformer Ferroresonance in 275 kV Substation,International Symposium on High Voltage Engineering, Vol. 1, August 1999[11] Working Group, Modeling and Analysis Guidelines for Slow Transients ∑ Part III: The Study of Ferroresonance,IEEE Transaction on Power Delivery, Vol. 15, No. 1, January 2000[12] ONG, C. M., Dynamic Simulation of Electric Machinery using MATLAB ® /SIMULINK, Prentice HallPTR, New Jersey, 1998[13] GREENWOOD, A., Electrical Transients in Power Systems, John Wiley & Sons, New York, 1991[14] MIRI, A. M., MÜLLER, C., SIHLER, C., Modelling of Inrush Currents in Power Transformers by aDetalied Magnetic Equivalent Circuit, International Conference on Power Systems Transients IPST,Rio de Janeiro, August 2001[15] BRUNKE, J. H., FRÖHLICH, K. J., Elimination of Transformer Inrush Currents by Controlled Switching∑ Part I: Theoretical Considerations, IEEE Transaction on Power Delivery, Vol. 16, No. 2, April2001[16] SEMLYEN, A., DE LEON, F., A Simple Represetation of Dynamic Hysteresis Losses in Power Transformers,IEEE Transactions on Power Delivery, 1, 1995[17] PRESSS, W. H., VETTERLING, W. T., TEUKOLSKY, S. A., FLANNERY, B. P., Numerical Recipes in C,The Art of Scientific Computing, Cambridge University Press, New York, 1994[18] SHAMPINE, L. F., REICHELT, M. W., The MATLAB ODE site, Matlab/ toolbox/ ode, 1999[19] Power System Blockset, User’s Gude, The MathWorks, Hydro-Quebec, TEQSIM International, 1999[20] TOKIΔ, A., NumeriËki proraËun niskofrekvencijskih elektromagnetskih prelaznih pojava u transformatorima,Doktorska disertacija, Fakultet Elektrotehnike i RaËunarstva SveuËiliπta u Zagrebu, Zagreb,listopad, 2004.Uredniπtvo primilo rukopis:2007-07-10PrihvaÊeno:2007-07-29Manuscript received on:2007-07-10Accepted on:2007-07-29607TokiÊ,A., UglešiÊ, I., NumeriËki proraËun niskofrekvencijskih..., Energija, god. 56(2007), br. 5., str. 584-607TokiÊ, A., UglešiÊ, I.,The Numerical Calculation of..., Energija, vol. 56(2007), No. 5, pp. 584-607

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