OPTIMIZED ENERGY EFFICIENT SOLUTION WITH STAND ALONE PV SYSTEM

Authors

  • Chandragiri Radha Charan JNTUH College of Engineering, Jagtial, Nachupally, Karimnagar, Telangana State, India
  • A.Jaya Laxmi JNTUH College of Engineering, Hyderabad, Kukatpally, Hyderabad, Telangana State, India
  • P. Sangeetha JNTUH College of Engineering, Jagtial, Nachupally, Karimnagar,Telangana State, India

DOI:

https://doi.org/10.20319/mijst.2017.31.1627

Keywords:

Renewable Energy Systems, Photovoltaic System, Batteries, Stand Alone PV System, PV Array, Pvsyst Software

Abstract

Photovoltaic systems are presenting an alternative source for production of electricity in a sustainable way. PV systems are a form of renewable energy systems that are progressively being used for efficient production of electricity. PV systems in the form of Stand Alone systems offer a potential solution to generate clean electricity with minimization of all form of losses. This system consists of PV array, battery, inverter and load. Its performance depends on orientation of PV array, horizon, irradiance, shading, the local climate, wind speed and direction and inverter performance. The I-V characteristics of the system are affected by shading of module and varying irradiance levels. The simulation model of Stand Alone PV System design using PVsyst software to perform the full analysis of PV systems is presented in this paper. The energy output throughout the year was simulated. The system loss diagram represents the efficiency of conversion and total energy output.

References

A. Drews et al., (2008), "Quality of Performance Assessment of PV Plants Based on Irradiation Maps," Solar Energy, Vol.82, 1067-1075. https://doi.org/10.1016/j.solener.2008.04.009

J. D. Mondol et al., (2006) "Long Term Performance Analysis of a Grid Connected Photovoltaic System in Northern Ireland," Energy Conversion and Management, Vol. 47, 2925-2947.https://doi.org/10.1016/j.enconman.2006.03.026

J. H. So et al., (2007) "Performance Results and Analysis of 3 kW Grid Connected PV Systems,"Renewable Energy, Vol. 32, 1858-1872. https://doi.org/10.1016/j.renene.2006.10.003

R. Ramaprabha & Dr.B. L. Mathur,: (2009) “Impact of Partial Shading on Solar PV Module Containing Series Connected Cells”, International Journal of Recent Trends in Engineering, Vol. 2, No. 7, November, 56-60.

T. Oozeki et al., (2003), "An Evaluation Method of PV Systems," Solar Energy Materials & Solar cells, Vol. 75, 687-695. https://doi.org/10.1016/S0927-0248(02)00143-5

T. Yamaguchi et al., (2006) "Measurement and Analysis of Residential PV Systems in Japanese Monitoring Program," IEC, Vol. 42.

www.pvsyst.comVersion 6.39

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Published

2017-01-18

How to Cite

Charan, C. R., Laxmi, A. J., & Sangeetha, P. (2017). OPTIMIZED ENERGY EFFICIENT SOLUTION WITH STAND ALONE PV SYSTEM. MATTER: International Journal of Science and Technology, 3(1), 16–27. https://doi.org/10.20319/mijst.2017.31.1627