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access icon openaccess Electrical field distribution of 35 KV Igla under polluted and ice-covered situation at power frequency

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References

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      • 1. He, J., Chen, S., Zeng, R., et al: ‘Development of polymeric surge ZnO arresters for 500-kV compact transmission line’, IEEE Trans. Power Deliv., 2005, 21, (1), pp. 113120.
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      • 2. Yang, X., Jie, G., Hua, H.: ‘The influence of equivalent capacitance of ZnO resistor on potential distribution of 500 KV canister arrester’, Shaanxi Electr. Power, 2009, 37, (10), pp. 3336.
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      • 3. Ramos, N.G., Campillo, R.M.T., Naito, K.: ‘A study on the characteristics of various conductive contaminants accumulated on high voltage insulators’, Power Deliv. IEEE Trans., 1993, 8, (4), pp. 18421850.
    4. 4)
      • 4. Neto, E.T.W., Costa, E.G.D., Souza, R.T.D., et al: ‘Monitoring and diagnosis of ZnO arresters’, IEEE Latin Am. Trans., 2006, 4, (3), pp. 170176.
    5. 5)
      • 5. He, J., Hu, J., Gu, S., et al: ‘Analysis and improvement of potential distribution of 1000-kV ultra-high-voltage metal–oxide arrester’, IEEE Trans. Power Deliv., 2009, 24, (3), pp. 12251233.
    6. 6)
      • 6. Zhao, Z., Zou, J., Li, X., et al:‘Electric field and potential distribution calculation of ZnO surge arrester on 500 kV transmission lines’, High Volt. Eng., 1999, 1, (1), pp. 8890.
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