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access icon openaccess Analysis of the equivalent fault characteristics of DC system and its impact on distance protection based on power-frequency variation

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References

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      • 1. Zhang, J., Suonan, J., He, F., et al: ‘Performance analysis of distance protection based on industrial frequency variation applied to AC-DC hybrid grid’, Autom. Electr. Power Syst., 2013, 2, (37), pp. 98103.
    2. 2)
      • 2. Li, H., Zhang, P., Wang, G., et al: ‘Performance of directional protection based on variation of power-frequency components in HVDC/AC interconnected system part one DC-system equivalent impedance of power-frequency component variation’, Autom. Electr. Power Syst., 2009, 3, (33), pp. 4146.
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      • 3. Li, H., Zhang, P., Wang, G., et al: ‘Performance of directional protection based on variation of power-frequency components in HVDC/AC interconnected system, part two: response of the directional protection for faulted line’, Autom. Electr. Power Syst., 2009, 3, (33), pp. 4753.
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      • 4. Suonan, J., Zhang, J., Jiao, Z., et al: ‘AC fault characteristic analysis of AC-DC hybrid transmission grid’, High Volt. Eng., 2010, 6, (36), pp. 14611467.
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      • 5. Liu, J., Wang, G., Li, H., et al: ‘Mechanism analysis of HVDC commutation failure influence on AC power network relay protection’, Proc. CSEE, 2013, 7, (33), pp. 111118.
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      • 6. Liu, J.: ‘Simulation study on fault characteristics of multi-send HVDC system’, Mech. Electr. Eng. Technol., 2016, 7, (45), pp. 7882.
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      • 7. Suonan, J., He, F., Jia, Z., et al: ‘Research on the characteristics of distance element based on the power-frequency voltage and current variation’, Proc. CSEE, 2010, 10, (30), pp. 5965.
    8. 8)
      • 8. Zhang, P., Li, H., Wang, G., et al: ‘The impact of HVDC commutation failure on the distance protection’. 2010 Asia-Pacific Power and Energy Engineering Conf., APPEEC, Chengdu, 2010, vol. 3, pp. 14.
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