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access icon openaccess Steady-state control strategy of VSC-HVDC transmission system based on full-order terminal sliding mode control method

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References

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      • 1. Zhou, Y., Zhuojiang, D., Fenwang, Y.: ‘The development of HVDC transmission system’. Third Int. Conf. on Digital Manufacturing & Automation, GuiLin, 2012, pp. 907910.
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      • 2. Flourentzou, N., Agelidis, V. G., Demetriades, G. D.: ‘VSC-Based HVDC power transmission systems: an overview’, IEEE Trans. Power Electron., 2009, 24, (3), pp. 592602.
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      • 3. Xu, Ling, Li, Shuhui: ‘Analysis of HVDC light control using conventional decoupled vector control technology’. IEEE PES General Meeting, Minneapolis, MN, 2010, pp. 18.
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      • 4. Guo, X., Wu, W., Chen, Z.: ‘Multiple-complex coefficient-filter-based phase-locked loop and synchronization technique for three-phase grid-interfaced converters in distributed utility networks’, IEEE Trans. Ind. Electron., 2011, 58, (4), pp. 11941204.
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      • 5. Moharana, A., Samarabandu, J., Varma, R. K.: ‘Fuzzy supervised PI controller for VSC HVDC system connected to induction generator based wind farm’. IEEE Electrical Power and Energy Conf., Winnipeg, MB, 2011, pp. 432437.
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      • 6. Liu, Z., Shao, W., Song, Q., et al: ‘A novel nonlinear decoupled controller for VSC-HVDC system’. Asia-Pacific Power and Energy Engineering Conf., Wuhan, 2009, pp. 15.
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      • 7. Lindberg, A., Lindberg, L.: ‘High power voltage source converter control response at large AC voltage phase shifts’. Proc. of 1995 Int. Conf. on Power Electronics and Drive Systems. PEDS 95, 1995, vol. 2, pp. 719725.
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      • 8. Lindberg, A., Larsson, T.: ‘Pwm and control of three level voltage source converters in an Hvdc back-to-back station’. Sixth Int. Conf. on AC and DC Power Transmission, London, UK, 1996, pp. 297302.
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