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JOURNALS || EIJO Journal of Science, Technology and Innovative Research (EIJO – JSTIR) [ ISSN : 2455 - 9938 ]
Analysis And Simulation Of Incremental Conductance MPPT Algorithm Sola PV Array Using Boosts Converter

Author Names : B.Vikram, P.Vikram, M.Saimurali, R.Sruthi, M.Ramesh  Volume 2 Issue 2
Article Overview

Abstract  

In this paper represents the modeling and simulation of the solar photo-voltaic (PV) array power generator. As the solar photo-voltaic system used the solar energy that is the renewable energies for the electric power generation. The DCvoltage generated by photovoltaic system is boosted by the DCDC boost converter. The maximum power point tracking (MPPT) technique is applied for operating the photovoltaic array at the maximum power point. The Perturb and Observe (P&O) technique controls the duty ratio of boost converter for varying the load according to the maximum power point tracking.

Keywords: Modeling, Photo-voltaic Cell, MPPT, DCDC Boost Converter.

Reference

[1]. Krishna Shenai and Krushal Shah, “Smart DC Micro-gridfor Efficient Utilization of Distributed Renewable Energy”Digest of IEEE Applied Power Electronics Conference andExposition,2011.

[2]. Wenhao Cai, Hui Ren, Yanjun Jiao, Mingwei Cai, XiangpuCheng, “Analysis and Simulation for Grid-ConnectedPhotovoltaic System based on Matlab” IEEE 2011.

[3]. Sweeka Meshram, Ganga Agnihotri and Sushma Gupta. “An Efficient Constant Current Controller for PV Solar PowerGenerator Integrated with the Grid” IEEE Applied Power Electronics Conference and Exposition, 2012.

[4]. Syam M S, T.Sreejith Kailas, “Grid Connected PV Systemusing Cuk Converter” International Conference onMicroelectronics, Communication and Renewable Energy(ICMiCR-2013).

[5]. Ahmed K. Abdelsalam, Ahmed M. Massoud, ShehabAhmed, and Prasad N. Enjeti. “High-Performance AdaptivePerturb and Observe MPPT Technique for Photovoltaic-Based Microgrids” IEEE Trans. Power electron. , vol.26,no.4, pp.1010-1021 April 2011.

[6]. Mohammed S. Agamy, Song Chi Ahmed Elasser, MajaHarfman Todorovic, Yan Jiang, Frank Mueller, andFengfeng TaoA, “ A High-Power-Density DC–DCConverter for Distributed PV Architectures” IEEE Journalof Photovoltaics vol.3,no.2, pp.791-798 April 2013.

[7]. Jinn-Chang Wu and Chia-Wei Chou, “A Solar Power Generation System With a Seven-Level Inverter” IEEETrans. Power electron vol.29,no.7 .pp.3454-3462 July 2014.

[8]. Jungmoon Kim and Chulwoo Kim, “A DC–DC BoostConverter With Variation-Tolerant MPPT Technique andEfficient ZCS Circuit for Thermoelectric Energy HarvestingApplications” IEEE Trans. Power electron. , vol.28,no.8,pp.3827-3837 August 2013.9 "Solar Photovoltaics: Status, Costs, and Trends," EPRI, PaloAlto, 1015804, 2009.

[9]. G.El-Saady, El-NobiA.Ibrahim, and Mohamed ELHendawi,“Simulated Annealing Modeling and AnalogMPPT Simulation for Standalone Photovoltaic Arrays”International Journal on Power Engineering and Energy(IJPEE) Vol.4, no.1, pp. 353-360 January 2013.

[10]. Wu Libo, Zhao Zhengming, Liu Jianzheng, “A Single-StageThree-Phase Grid-Connected Photovoltaic System WithModified MPPT Method and Reactive PowerCompensation” IEEE Trans. Energy Convers, vol. 22, no. 4,pp. 881–886 December 2007.

[11]. S. Alsadi, B.Alsayid, “Maximum Power Point TrackingSimulation for Photovoltaic” International Journal ofEngineering and Innovative Technology (IJEIT) Vol.2,Issue 6,pp.80-85 December 2012.

[12]. Dr. P.S. Bimbhra, Power Electronics, KhannaPublishers, New Delhi, 2012.International Journal of Engineering Research & Technology (IJERT)