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access icon openaccess Active and reactive power coordination control strategy of overvoltage for distributed PV integrated grid

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      • 2. Ning, Y, Zheng, J, Xia, L, et al: ‘Research and analysis on comprehensive output characteristics of photovoltaic power stations’, Taiyangneng Xuebao/Acta Ener. Solaris Sin., 2015, 36, (5), pp. 11971205.
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      • 3. Hashemi, S, Østergaard, J.: ‘Methods and strategies for overvoltage prevention in low voltage distribution systems with PV’, IET Renew. Power Gener., 2017, 11, (2), pp. 205214.
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      • 4. Xu, X, Huang, Y, Liu, C, et al: ‘Influence of distributed photovoltaic generation on voltage in distribution network and solution of voltage beyond limits’, Power Syst. Technol., 2010, 34, (10), pp. 140146.
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      • 5. Samadi, A, Eriksson, R, Söder, L, et al: ‘Coordinated active power-dependent voltage regulation in distribution grids With PV systems’, IEEE Trans. Power Deliv., 2014, 29, (3), pp. 14541464.
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      • 6. Jahangiri, P, Aliprantis, D.C.: ‘Distributed volt/VAr control by PV inverters’, IEEE Trans. Power Syst., 2013, 28, (3), pp. 34293439.
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      • 7. Mokhtari, G, Ghosh, A, Nourbakhsh, G, et al: ‘Smart robust resources control in LV network to deal with voltage rise issue’, IEEE Trans. Sustain. Energy, 2013, 4, (4), pp. 10431050.
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      • 8. Ferreira, P.D.F, Carvalho, P.M.S., Ferreira, L.A.F.M., et al: ‘Distributed energy resources integration challenges in low-voltage networks: voltage control limitations and risk of cascading’, IEEE Trans. Sustain. Energy, 2013, 4, (1), pp. 8288.
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      • 9. Ziadi, Z., Oshiro, M., Senjyu, T., et al: ‘Optimal voltage control using inverters interfaced With PV systems considering forecast error in a distribution system’, IEEE Trans. Sustain. Energy, 2014, 5, (2), pp. 682690.
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