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International Journal of Applied Agricultural & Horticultural Sciences
  • 28 April, 2024
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Frequency : Bimonthly
Language : English
DOI Prefix : 10.37322
P-ISSN : 0974-0775
E-ISSN : 2582-4198
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Vol. 9 (3) : May-June 2018 issue
Green Farming Vol. 9 (3) : 575-578 ; May-June, 2018
Analysis of monocrystalline panel and polycrystalline panel
NEELAM RATHORE1*,  SURENDRA KOTHARI2  and  N.L. PANWAR3
Department of Renewable Energy Engineering, College of Technology and Engineering, Maharana Pratap University of Agriculture & Technology, Udaipur - 313 001 (Rajasthan)
Designation :  
1Ph.D. Scholar *(neelamrathore79@gmail.com), 2Professor, 3Asstt. Professor
Subject : Agriculture Engineering, Farm Machinery, Energy & Power and Process Engineering
Paper No. : P-7259
Total Pages : 4
Received : 14 May 2018
Revised accepted : 19 May 2018
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Citation :

NEELAM RATHORE, SURENDRA KOTHARI and N.L. PANWAR. 2018. Analysis of monocrystalline panel and polycrystalline panel. Green Farming Vol. 9 (3) : 575-578 ; May-June, 2018

ABSTRACT
This paper presents the modeling and simulation of photovoltaic model using MATLAB/Simulink software package. Modeling and simulation is done for monocrystalline panel and polycrystalline panel of 40 Watt having total 37 cells in which 36 cell were connected in series and 1 cell in parallel. For both type of panels electrical characteristics are plotted and temperature effect is analyzed. Performance analysis of mono-crystalline and poly-crystalline solar photovoltaic panels was done considering certain parameters i.e. analysis of V-I curve, effect of variation in tilt angle on PV module power, effect of shading on PV module power, effect of increase of temperature on PV module power, efficiency, space efficiency and cost. Both the panels were compared on the basis of above parameters. The proposed model is very useful for engineers who are dealing with PV system designing.
Key words :
Monocrystalline panel, Photovoltaic module, Polycrystalline panel.