Features of finding a maximum power point of a solar battery on basis a matching pulse converter
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Abstract
Features of finding a maximum power point of a solar battery on basis a matching pulse converter are described. The impact of the input current pulsation of the matching converter on the energy amount of the solar battery is analyzed. Taking to account the shifting an operating point of the solar battery caused the pulse converter, search a maximum power zone instead a maximum power point is proposed. A condition of maximum power zone is formulated.
Bibl. 6, fig. 3.
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References
Andreev, V. М. Grikhles, V. A., Rumyantsev, V. D. (1989). Fotovoltavic transform of consetrating solar radiation. L.: Nauka, 310 p. (Rus)
V. Y., Romashko. (2013). Matching device load from the source of electrical entrgy. Energosbere-zhenie, energetica, energoaudit, № 8, Special issue Vol. 1, pp. 67-74. (Rus)
S., Leva, D., Zaninelli, R., Contino. (2007). Integrated renewable sources for supplying remote power systems. WSEAS Transactions on power systems, Vol. 2, № 2, pp. 41-48.
Romashko, V. J.,Verbytskyi, I. V.,Kyrychik, I. I. (2014). Utility patent 91151 Ukraine, MPK H02M3/02. The method of finding maximum power point of the solar battery - № 201315549; date of application 30.12.2013 ; publ. 25.06.2014, Bulletin № 12, 6 p. (Ukr)
J., Surya Kumari, Dr. Ch., Sai Babu, A., Kamalakar Babu (2012). Design and Analysis of P&O and IP&O MPPT Techniques for Photovoltaic System. International Journal of Modern Engineering Re-search, Vol.2, Issue.4, pp. 2174-2180.
Romashko, V. J., Verbitsky, I. V., Kyrychіk, I. I. (2014). Energy loses analyze in solar battery maxi-mum power picking system. Tekhnichna elektrodynamika, № 4, pp. 55-57. (Ukr)