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References

1 
M. Kapetanovic, “High voltage circuit breaker,” Faculty of Electrotechnical Engineering, Sarajevo, pp. 373-379, 2011.URL
2 
G. Friberg, and G.J. Pietsch, “Calculation of pressure rise due to arching faults,” IEEE Trans. Power Delivery, vol. 14, no. 2, pp. 365-370, Apr. 1999.DOI
3 
J. F. Zhang, J. D. Yan, A. B. Murphy, W. Hall, and M. T. C. Fang, “Auto-expansion circuit breaker contaminated by ablated nozzle vapor,” IEEE Trans. Plasma Sci., vol.30, pp. 706-719, 2002.URL
4 
D. Gordin, et al., “Modelling and simulation of nozzle ablation in high-voltage circuit breakers,” J. Phys. D: Appl. Phys., vol. 33, pp. 2583-2590, 2000.URL
5 
T. Shinkai, et al., “Improvement of thermal interruption capability in self-blast interrupting chamber for new 245kV 50kA GCB,” Electrical Engineering in Japan, vol. 167, no. 1, 2009.URL
6 
R. P. P. Smeets, V. Kertesz, “A new arc parameter database for characterisation of short-line fault interruption capability of high-voltage circuit breakers,” Cigre General Session 2006, Paper No. A3-110, 2006.URL
7 
Y. Pei, J. Zhong, J. Zhang, and J. D. Yan “A comparative study of arc behaviour in an auto-expansion circuit breaker with different arc durations,” J.Phys. D, Appl. Phys., vol. 47, pp. 3123–3130, 2014.URL
8 
Y. Hayashi, et al., “On the hot gas exhaustion in the exhaust chamber of a gas circuit breaker after short-circuit current interruption,” J.Phys. D, Appl. Phys., vol. 30, pp. 123–130, 1997.URL
9 
H. K. Kim, J. K. Chong, S. H. LEE, “Analysis of SLF Interruption Performance of Self-Blast Circuit Breaker by Means of CFD Calculation,” JEET., vol. 9, no. 1, pp. 254- 258, 2014URL
10 
M. Ziolkowski, and S. R. Gratkowski, “Genetic Algorithm and Bezier Curves-Based Shape Optimization of Conducting Shields for Low-Frequency Magnetic Fields,” IEEE Trans. Magn., vol. 44, pp. 1086-1089, 2008.DOI