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References

1 
P. G. Slade, 2008, The Vacuum Interrupter Theory, Design and Application, CRC Press, pp. 82-88DOI
2 
J. Ballat, D. König, U. Reininghaus, 1993, Spark conditioning procedures for vacuum interrupters in circuit breakers, IEEE Trans. Electr. Insul., Vol. 28, No. 4, pp. 621-627DOI
3 
K. Aoki, R. Nishimura, H. Kojima, M. Homma, T. Shioiri, H. Okubo, 2010, Enhancement of Breakdown Strength by Microdischarge under Impulse Voltage Applications in Vacuum, Proc. of 24th Int. Symp. on Discharges and Electr. Insulation in Vacuum (ISDEIV), pp. 32-35DOI
4 
H. Yang, Y. Geng, Z. Liu, X. Zai, C. Wang, 2012, A High Efficiency Conditioning Method of Vacuum Interrupters by High Frequency Voltage Impulses, Proc. of 25th Int. Symp. on Discharges and Electr. Insulation in Vacuum (ISDEIV), pp. 64-67DOI
5 
H. Kojima, M. Noda, H. Fukuda, M. Sakaki, N. Hayakawa, 2018, Effect of Initial Electrode Surface and Breakdown Charge on Spark Conditioning in Vacuum under Non-Uniform Electric Field, Proc. of 27th Int. Symp. on Discharges and Electr. Insulation in Vacuum (ISDEIV), pp. 51-54DOI
6 
F. Kondo, H. Kojima, H. Fukuda, M. Sakaki, N. Hayakawa, 2019, Suppression of Conditioning Effect in Vacuum by Micro-protrusions from Anode, 5th Int. Conf. on Electric Power Equip. – Switching Technology (ICEPE-ST), pp. 467-471DOI
7 
Y. K. Cha, I. H. Lee, K. B. Jeon, J. H. Jang, H. J. Ju, 2022, Study on Current Conditioning Process for Improving Withstand Voltage Performance of Vacuum Interrupter, J. Korean Inst. Electr. Electron. Mater. Eng., Vol. 35, No. 5, pp. 480-487DOI
8 
T. Donen, M. Sato, Y. Nishimura, S. Miki, M. Miyashita, 2023, Impulse Ratio Measurement Conditioning De- conditioning Effect in Vacuum, 30th Int. Symp. on Discharges and Electr. Insulation in Vacuum (ISDEIV), pp. 33-36DOI
9 
F. Kong, H. Kojima, T. Kimura, M. Tsukima, N. Hayakawa, 2016, Discharge Pattern Discrimination for Composite Insulation System in Vacuum Interrupter, 27th Int. Symp. on Discharges and Electr. Insulation in Vacuum (ISDEIV), pp. 505-508DOI
10 
F. Kong, 2016, Discharge Characteristics for Various Discharge Patterns under Negative Lightning Impulse Voltage in Vacuum, IEEE Trans. on Dielectrics and Electrical Insulation, Vol. 23, No. 2, pp. 813-818DOI