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Grid Interactive Photo Voltaic Power Generation
Subject area: Science,Engineering and Technology · Area of research: Electrical Engineering
Abstract
Photovoltaic systems are solar energy supply systems , which either supply power directly to an electrical load or feed energy into the utility grid . Extraction of abundant of power from the solar and interfacing to the electric grid through the power electronic components plays a significant role. Simulation of the solar energy conversion has been demonstrated . A photovoltaic based 3.5 KW solar inverter system is developed which consists of PV arrays , H bridge solar inverter, filters and transformer . The system works on both solar and AC mains depending on the load requirement. The aim of this project is to simulate and develop a PV based inverter system which converts DC power generated by the solar cells into AC power and provide it to the load connected to the utility grid, when the photovoltaic power is greater than the load , the excess power is fed to the grid. With this approach we can reduce the use of power from the grid and even sell back the excess power to grid . The system uses single stage high performance Maximum power point tracker(MPPT) for solar power generation. This system can be guaranteed to access power at home or industry, even if the solar energy fails or is insufficient and reduce the Energy Consumption and give a reliable support to the Grid
Keywords
Photovoltaic power generation , Power flow , SPWM ,Grid tied solar inverter, MPPT
References
[1] M. Gohukal, “A New Design Of Grid Tied Inverter For A Grid Interactive Solar Photovoltaic Power Generation – An Innovative Option For Energy Conservation And Security”, IJECT Vol.2, Issue 3, Sept .2011.
[2] Danish Hameed , “Solar Grid –Tied , With Battery Back-up, For Efficient Solar Energy Harvesting”,2016th 4th IEEE International Conference on Smart Energy Grid Engineering.
[3] Prof S .N Rawat, “Design OF Solar Based Integrated Dual Mode Inverter”,Volume , Issue(4) July, Technovision-2014, ISSN 2249-071X.
[4] Prof p. Manikandan. “Design And Implementation Of Solar Energy With Grid Interfacing”, International Journal of Science, Engineering and Technology Research (IJSETR) Volume 2, Issue 7, July 2013.
[5] Monika Verma, Harshit Agarwal, Naman Rawat, Vivek Kashyap, Akshay Kumar “Synchronization Between Solar Panel & Ac Grid Supply For Different Loads”, International Journal Of Scientific & Technology Research Volume 4, Issue 09, September 2015.
[6] K. Arulkumar, D Vijaykumar, K.Palanisamy “Efficient Control Design for Single Phase Grid Tie Inverter of PV system”,2014 International Conference on Advances in Electronics ,Computers and Communication
[7] Md. Jahangir Hossain , Md. Raqibull Hasan , Monowar Hossain and Md. Rafiqul Islam. “Design And Implementation Of a Grid Connected Single Phase Inverter for Photovoltaic System”. Department of Electrical and Electronic Engineering; Khulna University of Engineering &Technology; Khulna Bangladesh.
[8] V.Seenivasagan, A.Manikandan Gowtham, “ Design And Implementation Of Solar Energy With Grid Interfacing” , International Journal of Science, Engineering and Technology Research (IJSETR) Volume 2, Issue 7, July 2013.
[9] Monika Verma, Harshit Agarwal, Naman Rawat, Vivek Kashyap, Akshay Kumar “Synchronization Between Solar Panel & AC Grid Supply For Different Loads”, International Journal Of Scientific & Technology Research Volume 4, Issue 09, September 2015.
[10] M. Gohul, T. Jayachandran, A. Mohamed Syed Ali, T.G. Raju, N. Santhosh Kumar, M.R. Saravanan , Dept. of EEE, KNSK College of Engineering, India Maintenance Engineer, Brahmos Aerospace, DRDO, India “A New Design of Grid Tie Inverter for a Grid Interactive Solar Photovoltaic Power Generation – An Innovative Option for Energy Conservation & Security”,ISSN : 2230-9543(Print) Issue 3, Sept. 2011.
[11] Vikas Kulkarni, Rajesh Nehete. “Simulation and Analysis PF PV based Solar Inverter System”, International Journal of Soft Computing and Engineering (IJSCE) ISSN: 2231-2307, Volume-3, Issue-6, January 2014.
[12] Prakash Kumar Dewangan, Prof Umesh T. Nagdeve. “ Inverter For Grid Connected PV System A Review”, International Journal OF Advanced Research in Electrical Electronis And Instrumentation Engineering, Vol.3, Issue 10, October 2014.
[13] Satheesh kumar D. Ramya .N.D Indira .R, R Ashok. “Design And Analysis of Single Phase Grid connected Inverter”, International Journal Of Innovative research in Computer And Communication Engineering , Vol 3, Issue 2, Februray 2015
[14] Manisha Joshi, Prof. Dr . Mrs G.A. Vaidya. “Modeling and Simulation of Single Phase Grid Connected Solar Photovoltaic System”, 2014 Annual IEEE India Conference (INDICON)
[15] GANATRA B. H.1, Dr. Jha A. K.2 “Salient Features Of Grid-Connected Photovoltaic System And Its Impact On Power Supply”, International Journal of Modern Trends in Engineering and Research.
[16] Nishij Ganpatrao Kulkarni1, Vasudeo Bapuji Virulkar2 “Power Electronics and Its Application to Solar Photovoltaic Systems in India”, Copyright Scientific Research Publishing Inc.
How to cite this paper
@article{1700040,
author = {Karuna Choudhari, S.R.Lengade},
title = {Grid Interactive Photo Voltaic Power Generation},
journal = {Iconic Research And Engineering Journals},
year = {2017},
volume = {1},
number = {2},
pages = {47-53},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1700040.pdf},
abstract = {Photovoltaic systems are solar energy supply systems , which either supply power directly to an electrical load or feed energy into the utility grid . Extraction of abundant of power from the solar and interfacing to the electric grid through the power electronic components plays a significant role. Simulation of the solar energy conversion has been demonstrated . A photovoltaic based 3.5 KW solar inverter system is developed which consists of PV arrays , H bridge solar inverter, filters and transformer . The system works on both solar and AC mains depending on the load requirement. The aim of this project is to simulate and develop a PV based inverter system which converts DC power generated by the solar cells into AC power and provide it to the load connected to the utility grid, when the photovoltaic power is greater than the load , the excess power is fed to the grid. With this approach we can reduce the use of power from the grid and even sell back the excess power to grid . The system uses single stage high performance Maximum power point tracker(MPPT) for solar power generation. This system can be guaranteed to access power at home or industry, even if the solar energy fails or is insufficient and reduce the Energy Consumption and give a reliable support to the Grid},
keywords = {Photovoltaic power generation , Power flow , SPWM ,Grid tied solar inverter, MPPT},
month = {August},
}