Гибридная система децентрализованного электроснабжения на основе возобновляемых источников энергии разных видов
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Romero-Cadaval E., Spagnuolo G., Garcia Franquelo L., Ramos-Paja C.A., Suntio T., Xiao W.M. Grid-Connected Photovoltaic Generation Plants: Components and Operation. — IEEE Industrial Electronics Magazine, 2013, vol. 7, No. 3.
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A. Mohamed, T. Khatib. Optimal Sizing of a PV/Wind/Diesel Hybrid Energy System for Malaysia, ICIT, 2013, pp. 752-757.
Romero-Cadaval E., Spagnuolo G., Garcia Franquelo L., Ramos-Paja C.A., Suntio T., Xiao W.M. Grid-Connected Photovoltaic Generation Plants: Components and Operation. — IEEE Industrial Electronics Magazine, 2013, vol. 7, No. 3.
Kryukov K.V. and Valiev M.M. Residential photovoltaic power conditioning system with module integrated DC-DC converters. — Intern. Power Electronics and Motion Control Conf., Novi Sad, 2012, pp. DS3b.9-1—DS3b.9—4.
Blaabjerg F. and Ma K. Future on Power Electronics for Wind Turbine Systems. — IEEE Journal of Emerging and Selected Topics in Power Electronics, Sept. 2013, vol. 1, No. 3, pp. 139—152.
H. Polinder, F.F. A. van der Pijl, G.J. de Vilder and P.J. Tavner. Comparison of direct-drive and geared generator concepts for wind turbines. — IEEE Trans. on Energy Conversion, Sept. 2006, vol. 21, No. 3, pp. 725—733,
Lukutin B.V., Surzhikova O.A., Shandarova Ye.B. Vozobnovlyayemaya energetika v detsentralizovannom elektrosnabzhenii (Renewable energy in decentralized electricity supply). Moscow, Energoatomizdat, 2008, 231 p.
A. Mohamed, T. Khatib. Optimal Sizing of a PV/Wind/Diesel Hybrid Energy System for Malaysia, ICIT, 2013, pp. 752—757.
DOI: http://dx.doi.org/10.24160/0013-5380-2018-1-8-13
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