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References

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      • 1. Chuanyang, L., Jun, H., Chuanjie, L., et al: ‘The neglected culprit of DC surface flashover-electron migration under temperature gradients’, Sci. Rep., 2017, 7, (1), pp. 111.
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      • 2. Yuan, S., Xiaodong, C., Tianxiang, C., et al: ‘Analysis and estimation of temperature rise of medium voltage switchgear cabinet’, J. Xiamen Univ. Technol., 2015, 23, (1), pp. 4550.
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      • 3. Junpeng, R., Zhiye, D., Dong, W., et al: ‘Numerical simulation of three-dimensional fluid temperature field of 10 kV high voltage switchgear’, High Volt. Eng., 2015, pp. 18.
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      • 4. Liqun, X., Liang, S., Fusheng, N.: ‘Structure improvement and temperature field analysis of KYN28A-12 kV/4000A switchgear’, High Volt. Appar., 2017, 53, (3), pp. 254258.
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      • 5. Yan, Z., Yang, G., Tingting, L., et al: ‘Numerical simulation analysis of the temperature field of the contact of a high voltage switchgear’, Transducer Microsyst. Technol., 2008, 27, (12), pp. 102105.
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      • 6. Bingzheng, W., Jianwu, J., Ling, Z., et al: ‘Numerical calculation of temperature field for contact heating of high voltage switchgear’, High Volt. Appar., 2013, 49, (12), pp. 4247.
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      • 7. Lan, X., Minjie, X., Zikang, Y., et al: ‘‘Analysis of the temperature field of the cable room of the high voltage switchgear and the construction of the on-line monitoring system’’, Electr. Power Autom. Equip., 2014, 34, (6), pp. 153157.
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      • 8. Jing, H.: ‘High voltage Switch Cabinet temperature fault warning based on fiber-optic temperature measurement’. Master's thesis, Shandong University, 2009.
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      • 9. Jingzhou, C., Zhiye, D., Dong, W., et al: ‘‘Numerical analysis of temperature field of high voltage switchgear’’, Adv. Technol. Electr. Eng. Energy, 2017, (1), pp. 17.
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