Review on Method of Maximum Power Point Tracking in Photovoltaic Generation System

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This article summarizes the methods of Maximum Power Point Tracking (MPPT),including the CVT, P&O, INC and intelligent control, and merits and demerits are narrated in detail. Their recent research results are analyzed, finally the prospect of the development trend in MPPT photovoltaic power generation system is discussed.

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1710-1714

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Cui Yan , Cai Bing huang , Li Dayong, Hu Hongxun, Dong Jingwei. COMPARATIVE STUDIES ON THE MPPT CONTROL ALGORITHMS OF SOLAR ENERGY PHOTOVOLTAIC SYSTEM[J]. ACTA ENERGIAE SOLARIS SINICA[J]. 2006, 27(6).

Google Scholar

[2] BAI Zheng-min, FANG Bo, ZHANG Yuan-min, HOU Yuan-wen. Research on new type improved photovoltaic (PV) constant voltage tracking (CVT) control based on orCAD/PSpice analogy behavioral model simulation[J]. Power System Protection and Control, 2011, 39(21).

Google Scholar

[3] WANG Ning, ZHAI Qingzhi, XU Liang. Research on MPPT Algorithm in Medium& SmallSizePV System[J]. MODERN ELECTRONICS TECHNIQUE, 2010, 33(6).

Google Scholar

[4] LIU Guan-qi, YOU Xiao-ke, YANG Yu-xin, DU Bao-xing, ZHAO Zhen-yun. Study on Maximum Power Point Tracking Techniques for Photovoltaic Power Generation System[J]. Shaanxi Electric Power, 2012, 40(2).

Google Scholar

[5] Rosa A. Mastromauro, Marco Liserre, Antonio Dell'Aquila. Control Issues in Single-Stage Photovoltaic Systems : MPPT, Current and Voltage Control [J]. IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS, VOL. 8, NO. 2, MAY (2012).

DOI: 10.1109/tii.2012.2186973

Google Scholar

[6] WU Li-bo, ZHAO Zheng-ming, LIU Jian-zheng, WAMG Jian, LIU Shu. Research on the Stability of MPPT Strategy Applied in Single-stage Grid-connected Photovoltaic System[J]. PROCEEDINGS OF THE CHINESE SOCIETY FOR ELECTRICAL ENGINEERING, 2006, 26(6).

DOI: 10.1109/icems.2005.202702

Google Scholar

[7] Yong Yang, FangPing Zhao. Adaptive perturb and observe MPPT technique for Grid-connected Photovoltaic Inverters[J]. Procedia Engineering 23 (2011) 468 – 473.

DOI: 10.1016/j.proeng.2011.11.2532

Google Scholar

[8] WU Li-bo, ZHAO Zheng-ming, LIU Jian-zheng, WAMG Jian, LIU Shu. Research on the Stability of MPPT Strategy Applied in Single-stage Grid-connected Photovoltaic System[J]. Proceedings of the CSEE, Vol. 26 No. 6 Mar. (2006).

DOI: 10.1109/icems.2005.202702

Google Scholar

[9] NIEXiao—hua. Application research of Kalman estimate in photovoltaic system MPPT method[J]. Chinese Journal of Power Sources, 2012, 36(12).

Google Scholar

[10] HE Ren-wang, QIU Wan-ying, WU Xun, QI Van, XIE Wei. Simulation study of new perturbation and observation method in MPPT based on PSIM. Power System Protection and Control[J], 2012, 40(7).

Google Scholar

[11] YANG Jian-xun. Tudy on improved power disturbances MPPT control algorithm of photovoltaic system[J].Journal of East China Institute of Technology(Natural Science),34(4): 396-400.

Google Scholar

[12] HUANG Shu-yu, MU Long-hua , SHI Lin. Adaptive Variable Step Size MPPT Algorithm [J] . Proceedings of the Chinese Society of Universities, 2011, 23(5).

Google Scholar

[13] GAO Jin-hui, TANG Jing. A novel MPPT method for PV Systems[J]. Power System Protection and Control, 2011, 39(23).

Google Scholar

[14] CHEN Tang—min. Incremental method based on adaptive conductance of MPPT[J]. Chinese Journal of Power Sources, 2013, 37(1).

Google Scholar

[15] Trishan Esram, Patrick L. Chapman. Comparison of Photovoltaic Array Maximum Power Point Tracking Techniques[J]. IEEE TRANSAC TIONS ON ENERGY CONVERSION, VOL. 22, NO. 2, JUNE (2007).

DOI: 10.1109/tec.2006.874230

Google Scholar

[16] Abdullah M. Noman, Khaled E. Addoweesh, and Hussein M. Mashaly. A Fuzzy Logic Control Method for MPPT of PV Systems[J]. 978-1-4673-2421-2/12 ©2012 IEEE, 874-880.

DOI: 10.1109/iecon.2012.6389174

Google Scholar

[17] R. Arulmurugan, N. Suthanthira Vanitha. Intelligent Fuzzy MPPT Controller using Analysis of DC to DC Novel Buck Converter for Photovoltaic Energy System Applications[J]. Proceedings of the 2013 International Conference on Pattern Recognition, Informatics and Mobile Engineering, February 21-22.

DOI: 10.1109/icprime.2013.6496477

Google Scholar

[18] ZHOULin,WUJian,LI Qiu-hua,GUO Ke. Survey of Maximum Power Point Tracking Techniques for Photovoltaic Array[J]. HIGH VOLTAGE ENGINEERING, 2008, 34(6).

Google Scholar

[19] Kumars Rouzbehi\ Arash Miranian2, Alvaro Lunai, Pedro Rodriguezi. Identification and Maximum Power Point Tracking of Photovoltaic Generation by a Local Neuro-Fuzzy Model[J]. 978-1-4673-2421-2/12 ©2012 IEEE.

DOI: 10.1109/iecon.2012.6388581

Google Scholar

[20] F. Chekired, C. Larbes, D. Reki oua, F. Haddad. Implementation of a MPPT fuzzy controller photovoltaic systems on FPGA circuit[J]. Energy Procedia 6 (2011) 541–549.

DOI: 10.1016/j.egypro.2011.05.062

Google Scholar

[21] Qiang Fu, Nan Tong. Research on MPPT Technique in Photovoltaic Power Generation System[J]. 2012 International Conference on Computer Science and Electronics Engineering, IEEE computer society, 978-0-7695-4647-6/12 © 2012 IEEE.

DOI: 10.1109/iccsee.2012.346

Google Scholar

[23] Xu Fang, Zhang Ren, Wu Lebin, Xu Hongwei. SELF-ADAPTION BP NEURAL NETWORK FOR THEMAXIMUM-POWER-POINT TRACKING IN PHOTOVOLTAIC[J]. Acta Energiae Solaris Sinica 2012, 33(3).

Google Scholar

[24] XIAOJun-ming, WANG Dong-yun, LIYah-bin, JIAOLing-yun. Research on a maximum power point tracking with DRP based on genetic algorithm[J]. POWER SYSTEM PROTECTION AND CONTROL2010, 38(15).

Google Scholar

[25] LONGJie. Research on the MPPT technology of photovoltaic system based on NN model estimation[J]. Power System Protection and Control, V01. 39No. 20Oct. 16, (2011).

Google Scholar

[26] Phan Quoc, Dzung Le DinhKhoa , Hong Hee Lee. The New MPPT Algorithm using ANN-Based PV[J]. IFOST 2010 Proceedings, 978-1-4244-9037-0/101©2010 IEEE.

DOI: 10.1109/tencon.2010.5686721

Google Scholar