Open Access Open Access  Restricted Access Subscription or Fee Access

Simulation and Analysis of Grid Integrated Solar PV System under Variable Climatic Conditions

Surghyan Haritwal, Bharat Bhushan Jain

Abstract


Infusing photovoltaic power into the utility network has earned expansive affirmation in nowadays of reasonable force source age and scattering. Lattice associated inverters have propelled inside and out with high-various assortment. Effectiveness, size, weight, steadfastness, etc have all improved in a general sense with the improvement of present and imaginative inverter arrangements and these factors have influenced the expense of delivering inverters. This paper shows a composing overview of the continuous innovative progressions and examples in the Grid-Connected Photovoltaic Systems (GCPVS). The PV business is depended upon to continue getting because of a couple of segments like the falling expenses of silicon and PV modules, innovative movements in colossal scale creating, various administrative motivating powers, improvement and extension of perfect interconnection understandings and continued innovative improvement of intensity converter headways. This paper clarifies the demonstrating and recreation of 100 Kwp framework associated framework utilizing MATLAB reproduction squares and numerical detailing of framework establishment process. Different figure of benefits, for example, PV and IV curves Input parametric variety has been planned for understanding difficulties in the establishment of framework.


Keywords: Solar PV, Grid Connected, Power, MPPT, SPV System


Full Text:

PDF

References


M. G. Villalva, J. R. Gazoli, and E. R. Filho, ‘‘Comprehensive approach to modeling and simulation of photovoltaic arrays,’’ IEEE Trans. Power Electron., vol. 24, no. 5, pp. 1198-1208, May 2009.

T. Esram and P. L. Chapman, “Comparison of Photovoltaic Array Maximum Power Point Tracking Techniques,” IEEE Trans. Energy Convers., vol. 22, no. 2, pp. 439–449, 2007.

Bilal, Babar. "Implementation of artificial bee colony algorithm on maximum power point tracking for PV modules." In Advanced Topics in Electrical Engineering (ATEE), 8th International Symposium on, pp. 1-4. IEEE, 2013.

Z. Cheng, H. Zhou, and H. Yang, “Research on MPPT control of PV system based on PSO algorithm,” 2010 Chinese Control Decis. Conf. CCDC 2010, pp. 887–892, 2010.

Li, Shuhui, and Huiying Zheng. "Energy extraction characteristic study of solar photovoltaic cells and modules." In Power and Energy Society General Meeting, 2011 IEEE, pp. 1-7. IEEE, 2011.

M. Miyatake, F. Toriumi, T. Endo, and N. Fujii, “A Novel maximum power point tracker controlling several converters connected to photovoltaic arrays with particle swarm optimization technique,” 2007 Eur. Conf. Power Electron. Appl., pp. 1–10, 2007.

C.-L. Liu, Y.-F. Luo, J.-W. Huang, and Y.-H. Liu, “A PSO-based MPPT algorithm for photovoltaic systems subject to inhomogeneous insolation,” 6th Int. Conf. Soft Comput. Intell. Syst. 13th Int. Symp. Adv. Intell. Syst., no. 1, pp. 721–726, 2012

M. C. Di Vincenzo and D. Inf, “Artificial Neural Network for real time modelling of photovoltaic system under partial shading,” 2010 IEEE Int. Conf. Sustain. Energy Technol., pp. 1–5, 2010.

A real maximum power point tracking method for mismatching compensation in PV array under partially shaded conditions,” IEEE Trans. Power Electron., vol. 26, no. 4, pp. 1001–1009, 2011.

Q. Duan, J. Leng, P. Duan, B. Hu, and M. Mao, “An Improved Variable Step PO and Global Scanning MPPT Method for PV Systems under Partial Shading Condition,” in 7th International Conference on Intelligent Human-Machine Systems and Cybernetics, pp. 382–386,2015.

P. Lei, Y. Li, and J. E. Seem, “Sequential ESC-based global MPPT control for photovoltaic array with variable shading” ,IEEE Transactions on Sustainable Energy, vol. 2, no. 3, pp. 348–358, 2011.

B. N. Alajmi, K. H. Ahmed, S. J. Finney, B. W. Williams, and B. Wayne Williams, “A Maximum Power Point Tracking Technique for Partially Shaded Photovoltaic Systems in Micro grids” ,IEEE Transactions on Industrial Electronics, vol. 60, no. 4, pp. 1596–1606, 2011.

K. Chen, S. Tian, Y. Cheng, and L. Bai, “An Improved MPPT Controller for Photovoltaic System Under Partial Shading Condition,” Sustain. Energy, IEEE Trans., vol. 5, no. 3, pp. 978–985, 2014.

J. Ahmed, S. Member, and Z. Salam, “An Improved Method to Predict the Position of Maximum Power Point During Partial Shading for PV Arrays,” IEEE Trans. Ind. Informatics, vol. 11, no. 6, pp. 1378–1387, 2015.

Hariharan, M. Chakkarapani, G. S. Ilango, C. Nagamani, and S. Member, “A Method to Detect Photovoltaic Array Faults and Partial Shading in PV Systems,” IEEE J. Photovoltaics, pp. 1–8, 2016.

Uzunoglu, M., and M. S. Alam. "Dynamic modeling, design, and simulation of a combined PEM fuel cell and ultracapacitor system for stand-alone residential applications." IEEE Transactions on Energy Conversion 21.3 (2006): 767-775.

Onar, O. C., M. Uzunoglu, and M. S. Alam. "Modeling, control and simulation of an autonomous wind turbine/photovoltaic/fuel cell/ultra-capacitor hybrid power system." Journal of Power Sources 185.2 (2008): 1273-1283.

Hidaka, Yasuhito, and Koji Kawahara. "Modeling of a hybrid system of photovoltaic and fuel cell for operational strategy in residential use." Universities Power Engineering Conference (UPEC), 2012 47th International. IEEE, 2012.

Gaonkar, D. N., and Sanjeev Nayak. "Modeling and performance analysis of microturbine based Distributed Generation system,“a review”." Energytech, 2011 IEEE. IEEE, 2011.

Khan, M. J., and M. T. Iqbal. "Pre-feasibility study of stand-alone hybrid energy systems for applications in Newfoundland." Renewable energy 30.6 (2005): 835-854.




DOI: https://doi.org/10.37591/jovdtt.v10i2.4240

Refbacks

  • There are currently no refbacks.


Copyright (c) 2020 Journal of VLSI Design Tools & Technology



eISSN: 2249–474X