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access icon openaccess Research on protection block strategy of grounding faults in HVDC converter station

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References

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      • 1. Zhenya, L., Yinbiao, S., Wenliang, Z., et al: ‘Study on voltage class series for HVDC transmission system’, Proc. CSEE, 2008, 29, (2), pp. 3545.
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      • 2. Wenliang, Z., Yongqing, Y., Guangfan, L., et al: ‘Researches on UHVDC technology’, Proc. CSEE, 2007, 27, (22), pp. 17.
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      • 3. Xuming, L., Ping, Z., Yong, C.: ‘Recent advances in high-voltage direct-current power transmission and its developing potential’, Power Syst. Technol., 2012, 36, (4), pp. 19.
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      • 4. Wenliang, Z., Xiaoxin, Z., Jianbo, G., et al: ‘Feasibility of ±1000 kV ultra HVDC in the power grid of China’, Proc. CSEE, 2007, 27, (28), pp. 17.
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      • 5. Yinbiao, S., Wenliang, Z.: ‘Research of key technologies for UHV transmission’, Proc. CSEE, 2007, 27, (31), pp. 16.
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      • 6. Shichao, Y., Dongju, W., Xilei, C., et al: ‘Study on neutral-bus overvoltage mechanism of ±500 kV DC power transmission project from Tianshengqiao to Guangdong’, Power Syst. Technol., 2011, 35, (5), pp. 216222.
    7. 7)
      • 7. Daqian, J., Zehong, L., Jin, Z., et al: ‘Research on overvoltage limitation inside ±1100 kV UHVDC converter station’, Power Syst. Technol., 2012, 36, (10), pp. 5560.
    8. 8)
      • 8. Yichen, L., Xiaoguang, Z., Junbo, D., et al: ‘Typical grounding overvoltage in ±1100 kV HVDC converter station’, High Volt. Eng., 2017, 43, (10), pp. 32383247.
    9. 9)
      • 9. Pengfei, H., Guogong, W., Min, L., et al: ‘The DC protection block strategy in Xiangjiaba-Shanghai ±800 kV UHVDC transmission project’, Power Syst. Prot. Control, 2011, 39, (9), pp. 137140.
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