[1] Van der Sluis, L., Rutgers, W.R., and Koreman, C.G.A.: “A Physical Arc Model for the Simulation of Current Zero Behaviour of High-Voltage Circuit Breakers ”, IEEE Tran.s on Power Delivery, Vol. 7, No. 2, pp. 1016-1022,1992.
[2] Schavemaker, P.H., and Van der Sluis, L.: “An Improved Mayr-Type Arc Model Based on Current-Zero Measurements”, IEEE Tran.s on Power Delivery, Vol. 15, No. 2,pp. 580-584,April 2000.
[3] Cassie, A. M.: “Theorie Nouvelle des Arcs de Rupture et de la Rigidité des Circuits”, CIGRE, Report 102, pp. 588-608, 1939.
[4] Habedank, U.: “On the Mathematical Description of Arc Behaviour in the Vicinity of Current Zero”, etzArchiv, Bd. 10, H. 11, pp. 339-343, 1988.
[5] Mayr, O.: “Beitrage zur Theorie des Statischen und des Dynamischen Lichtbogens” , Archiv für Elektrotechnik, Band 37, Heft 12, pp. 588-608,1943.
[6] Mayr, O.: “Über die Theorie des Lichtbogens und seiner Löschung”, Elektrotechnische Zeitschrift, Jahrgang 64, Heft 49/50, pp. 645-652, 16 Dezember1943.
[7] Schwarz, J.: “Dynamisches Verhalten eines Gasbeblasenen, Turbulenzbestimmten Schaltlichtbogens”, ETZ-A, Bd. 92, pp. 389-391, 1971.
[8] Smeets, R.P.P., and Kertész, V.: “Evaluation of High-Voltage Circuit Breaker Performance with a New Validated Arc Model”, IEE Proc.- Gener. Transm. Distrib., Vol. 147, No. 2, pp. 121-125, March 2000.
[9] Parizad, A., Baghaee, H.R. Tavakoli, A., Jamali, S.: “Optimization of arc models parameter using genetic algorithm”, Int. Conf. on Electric Power and Energy Conversion Systems, EPECS '09,pp.1-7,2009.
Thank you for copying data from http://www.arastirmax.com