Submit your paper : editorIJETjournal@gmail.com Paper Title : Performance Analysis of FLC MPPT for Standalone Photovoltaic System ISSN : 2395-1303 Year of Publication : 2022 10.5281/zenodo.6967358 MLA Style: - S. Sandhya Rani, N. Gangadhar, Performance Analysis of FLC MPPT for Standalone Photovoltaic System , Volume 8 - Issue 4 July- August 2022 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org APA Style: - S. Sandhya Rani, N. Gangadhar, Performance Analysis of FLC MPPT for Standalone Photovoltaic System , Volume 8 - Issue 4 July- August 2022 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org Abstract This paper presented the performance of Fuzzy Logic Controller based MPPT for standalone PV system. The traditional perturbation and observation (PO) MPPT method is incapable of rapidly acquiring the maximum power point (MPP), and the tracking course is extremely difficult under unfavorable weather circumstances; however, the reason for this is unknown. Due to their ease of application and excellent tracking efficiency, incremental conductance techniques are commonly employed. The MPP is not known on the V-I or V-P curves, but it can be found using search algorithms such as perturbation and observation (P&O) and incremental conductance (InC). In this paper, an FLC algorithm is proposed for tracking an MPP on the V-I characteristic of a solar PV panel. Using Matlab Simulink software, the simulation results can be used to validate the effectiveness of the proposed work under various atmospheric conditions Reference 1. V. Padmanabhan,V. Beena, andM. Jayaraju, “Fuzzy logic based maximum power point tracker for a photovoltaic system,” in Proc. Int. Conf. Power Signals, Control Comput., 2012, pp. 1–6. 2. M. A. Azam, S. A. A. Nahid, M. M. Alam, and B. A. Plabon, “Microcontroller based high precision PSO algorithm for maximum solar power tracking,” in Proc. Conf. Electron. Vis., 2012, pp. 292–297. 3. K. Ishaque, Z. Salam, M. Amjad, and S. Mekhilef, “An improved particle swarm optimization (PSO)-based MPPT for PV with reduced steady-state oscillation,” IEEE Trans. Power Electron., vol. 27, no. 8, pp. 3627–3638, Aug. 2012. 4. D. C. Huynh, T. N. Nguyen, M. W. Dunnigan, and M. A. Mueller, “Dynamic particle swarm optimization algorithm based maximum power point tracking of solar photovoltaic panels,” in Proc. IEEE Int. Symp. Ind. Electron, 2013, pp. 1–6. 5. D. C. Huynh, T. M. Nguyen, M.W. Dunnigan, andM. A.Mueller, “Global MPPT of solar PV modules is using a dynamic PSO algorithm under partial shading conditions,” in Proc. IEEE Int. Conf. Clean Energy Technol., 2013, pp. 133–138. 6. G. M. Master, “Renewable and efficient electric power systems,” in Renewable and Efficient Electric Power Systems. New York, NY, USA: Wiley, 2004, pp. 385–604. 7. B. Liu, S. Duan, F. Liu, and P. Xu, “Analysis and improvement of maximum power point tracking algorithm based on incremental conductance method for photovoltaic array,” in Proc. 7th Int. Conf. Power Electron.Drive Syst., 2007, pp. 637–641. 8. W. Ping, D. Hui, D. Changyu, and Q. Shengbiao, “An improved MPPT algorithm based on traditional incremental conductance method,” in Proc.4th Int. Conf. Power Electron. Syst. Appl., 2011, pp. 1–4. 9. Y. Zhihao and W. Xiaobo, “Compensation loop design of a photovoltaic system based on constant voltage MPPT,” in Proc. Asia-Pacific Power Energy Eng. Conf., 2009, pp. 1–4. 10. K. A. Aganah and A. W. Leedy, “A constant voltage maximum power point tracking method for solar powered systems,” in Proc. IEEE 43rdSoutheasternSymp. Syst. Theory, 2011, pp. 125–130. 11. J. H. R. Enslin, M. S. Wolf, D. B. Snyman, and W. Sweigers, “Integrated photovoltaic maximum power point tracking converter,” IEEE Trans. Ind. Electron., vol. 44, no. 6, pp. 769–773, Dec. 1997. 12. R. Faranda and S. Leva, “Energy comparison of MPPT techniques for PV systems,” WSES Trans. Power Syst., vol. 3, no. 6, pp. 446–455, 2008. 13. X. Jun-Ming, J. Ling-Yun, Z. Hai-Ming, and Z. Rui, “Design of track control system in PV,” in Proc. IEEE Int. Conf. Softw. Eng. Service Sci., 2010, pp. 547–550. 14. Z. Bao-Jian, G. Guo-Hong, and Z. Yan-Li, “Designment of automatic tracking system of solar energy system,” in Proc. 2nd Int. Conf. Ind. Mechatronics Autom., 2010, pp. 689–691. 15. W. Luo, “A solar panels automatic tracking system based on OMRON PLC,” in Proc. 7th Asian Control Conf., 2009, pp. 1611–1614. 16. W. Chun-Sheng,W. Yi-Bo, L. Si-Yang, P. Yan-Chang, and X. Hong-Hua, “Study on automatic sun-tracking technology in PV generation,” in Proc.3rd Int. Conf. Elect. Utility Deregulation Restruct. Power Technol., 2008, pp. 2586–2591. 17. C. Alexandru and C. Pozna, “Different tracking strategies for optimizing the energetic efficiency of a photovoltaic system,” in Proc. Int. Conf. Autom., Quality Testing, Robot, 2008, pp. 434–439. 18. R. Sridhar, S. Jeevananthan, N. T. Selvan, and P. V. SujithChowdary, “Performance improvement of a photovoltaic array using MPPT P&O technique,” in Proc. Int. Conf. Control Comput. Technol., 2010, pp. 191– 195. 19. N.M. Razali and N. A. Rahim, “DSP-based maximum peak power tracker using P&O algorithm,” in Proc. IEEE 1st Conf. Clean Energy Technol. 2011, pp. 34–39. 20. L. Chun-Xia and L. Li-qun, “An improved perturbation and observation MPPT method of photovoltaic generates system,” in Proc. 4th IEEE Conf.Ind. Electron. Appl., 2009, pp. 2966–2970. 21. Y. Jung, J. So, G. Yu, and J. Choi, “Improved perturbation and observation method (IP&O) of MPPT control for photovoltaic power systems,” in Proc. 31st IEEE Photov. Spec. Conf., 2005, pp. 1788–1791. 22. X. Liu and L. A. C. Lopes, “An improved perturbation and observation maximum power point tracking algorithm for PV arrays,” in Proc. IEEE 35th Annu. Power Electron. Spec. Conf., 2004, pp. 2005–2010. 23. D. C. Huynh, T. A. T. Nguyen, M. W. Dunnigan, and M. A. Mueller, “Maximum power point tracking of solar photovoltaic panels using advanced perturbation and observation algorithm,” in Proc. IEEE Conf. Ind. Electron. Appl., 2013, pp. 864–869. 24. B. Liu, S. Duan, F. Liu, and P. Xu, “Analysis and improvement of maximum power point tracking algorithm based on incremental conductance method for photovoltaic array,” in Proc. 7th Int. Conf. Power Electron. Drive Syst., 2007, pp. 637–641. Keywords - PV system, MPPT, FLC, Irradiation |