An Intelligent Photovoltaic Module for Distributed Power Generation

  • Борис Михайлович Антонов
  • Nikolay N. BARANOV
  • Konstantin V. KRYUKOV
  • Yriy K. ROZANOV
  • Yekaterina S. YEROKHINA
Keywords: maximum power point controller, DC controller, photovoltaic systems, series connection of photovoltaic modules, intelligent photovoltaic module

Abstract

For designing a hybrid power-generating system (HPGS) containing renewable energy sources (RESs) represented by a windmill and a photovoltaic generator along with standby sources represented by a diesel-generator set (DGS) and a storing device (an electric energy storage), the article describes an approach to solving an important scientific-technical problem of elaborating possible versions of the control system and algorithms for automatic closed-loop control of the primary renewable energy sources, which is aimed at taking the maximum possible power from the RESs in order to limit the use of DGS as part of the HPGS. The new scientific results obtained from the study are oriented at solving practical tasks connected with securing uninterrupted power supply to distributed consumers in different regions of the Russian Federation.

Author Biographies

Борис Михайлович Антонов

ANTONOV Boris M. (Joint Institute for High Temperatures of the Russian Academy of Sciences — JIHT RAS, Moscow, Russia) — Leading Researcher, Dr. Sci. (Eng.)

Nikolay N. BARANOV

BARANOV Nikolay N. (JIHT RAS, Moscow, Russia) — Professor, Chief Researcher, Dr. Sci. (Eng.)

Konstantin V. KRYUKOV

KRYUKOV Konstantin V. (National Research University «Moscow Power Engineering Institute» — NRU «MPEI», Moscow, Russia) — Senior Lecturer

Yriy K. ROZANOV

ROZANOV Yriy K. (NRU «MPEI», Moscow, Russia) — Professor, Dr. Sci. (Eng.)

Yekaterina S. YEROKHINA

YEROKHINA Yekaterina S. (NRU «MPEI», Moscow, Russia) — Graduate Student

References

Антонов Б.М., Баранов Н.Н., Крюков К.В., Розанов Ю.К. Гибридная система децентрализованного электроснабжения на основе возобновляемых источников энергии разных видов. — Электричество, № 1, 2018, с. 8—13.

Li R., Wu B., Li X., Zhou F. and Li Y. Design of wind-solar and pumped-storage hybrid power supply system. — 3rd IEEE Intern. Conf. on Computer Science and Information Technology (ICCSIT), 2010, vol. 5, pp. 402-405.

Mohamed A., Khatib T. Optimal Sizing of a PV/Wind/Diesel Hybrid Energy System for Malaysia. - ICIT, 2013, pp. 752-757,

Walker G.R. and Sernia P.C. Cascaded DC-DC converter connection of photovoltaic modules. — IEEE Transactions on Power Electronics, 2O04, vol. 19, No. 4, pp. 1130—1139.

Kadri R., Gaubert J.P. and Champenois G. Nondissipative String Current Diverter for Solving the Cascaded DC—DC Converter Connection Problem in Photovoltaic Power Generation System. — IEEE Transactions on Power Electronics, 2012, vol. 27, No. 3, pp. 1249—1258.

Bratcu A.I., Munteanu I., Bacha S., Picault D., Raison B. Cascaded DC-DC Converter Photovoltaic Systems: Power Optimization Issues. — IEEE Transactions on Industrial Electronics, 2011, vol. 58, No. 2, pp. 403—411.

Kryukov K.V., Baranov N.N., Antonov B.M. Increasing the efficiency of joint operation of a solar-power plant with an industrial alternating-current network. — Russian Electrical Engineering, 2017, 88 (7), pp. 459—464.

Femia N., Petrone G., Spagnuolo G., Vitelli M. Optimization of perturb and observe maximum power point tracking method. — IEEE Trans. Power Electron., 2005, vol. 20, No.4, pp. 963—973.

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Antonov B.M., Baranov N.N., Kryukov K.V., Rozanov Yu.K. Elektrichestvo — in Russ. (Electricity), No. 1, 2018, pp. 8—13.

Li R., Wu B., Li X., Zhou F. and Li Y. Design of wind-solar and pumped-storage hybrid power supply system. — 3rd IEEE Intern. Conf. on Computer Science and Information Technology (ICCSIT), 2010, vol. 5, pp. 402—405.

Mohamed A., Khatib T. Optimal Sizing of a PV/Wind/Diesel Hybrid Energy System for Malaysia. — ICIT, 2013, pp. 752—757,

Walker G.R. and Sernia P.C. Cascaded DC-DC converter connection of photovoltaic modules. — IEEE Transactions on Power Electronics, 2004, vol. 19, No. 4, pp. 1130—1139.

Kadri R., Gaubert J.P. and Champenois G. Nondissipative String Current Diverter for Solving the Cascaded DC—DC Converter Connection Problem in Photovoltaic Power Generation System. — IEEE Transactions on Power Electronics, 2012, vol. 27, No. 3, pp. 1249—1258.

Bratcu A.I., Munteanu I., Bacha S., Picault D., Raison B. Cascaded DC-DC Converter Photovoltaic Systems: Power Optimization Issues. — IEEE Transactions on Industrial Electronics, 2011, vol. 58, No. 2, pp. 403—411.

Kryukov K.V., Baranov N.N., Antonov B.M. Increasing the efficiency of joint operation of a solar-power plant with an industrial alternating-current network. — Russian Electrical Engineering, 2017, 88 (7), pp. 459—464.

Femia N., Petrone G., Spagnuolo G., Vitelli M. Optimization of perturb and observe maximum power point tracking method. — IeEe Trans. Power Electron., 2005, vol. 20, No.4, pp. 963—973.
Published
2019-07-23
Section
Article