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access icon openaccess Numerical calculation of the lightning transient voltage distribution on converter transformer winding based a dual winding model

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References

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      • 1. Rani, K.: ‘Transient voltage distribution in transformer winding’, Exp. Invest., 2013, 02, (4), pp. 579583.
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      • 2. Dong, M., Yuan, Z., Li, T., et al: ‘Protection of ± 500 kV HVDC double-circuit converter station from lightning induced overvoltage’, Gaodianya Jishu/High Vol. Eng., 2013, 39, (8), pp. 20532060.
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      • 3. Shibuya, Y., Fujita, S., Tamaki, E.: ‘Analysis of very fast transients in transformer’, IEE Proc., 2001, 148, (5), pp. 377383.
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      • 4. Tian, S., Liu, X., Liu, H., et al: ‘Numerical analysis of lightning transient voltage distributions in HV converter transformer winding’. Int. Conf. on Condition Monitoring and Diagnosis, IEEE, 2016, pp. 444447.
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      • 5. Tang, M.: ‘Analysis of the transient overvoltage caused by the lightening impulse in the transformer winding’. PhD thesis, Huazhong University of Science and Technology, Wuhan, China, 2012.
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      • 6. Gupta, S., Singh, B.: ‘Determination of the impulse voltage distribution in windings of large power transformers’, Electr. Power Syst. Res., 1992, 25, (3), pp. 183189.
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      • 7. Wang, Z.: ‘A model for transient analysis in large transformer windings’, J. Tsinghua Univ., 1993, 33, (1), pp. 2532.
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      • 8. Luca, D., Fabian, S., Johanna, W.: ‘Self-capacitance of high-voltage transformer IEEE transactions on power electronics’, IEEE Trans. Power Electron., 2007, 22, (5), pp. 20812092.
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