Optimal design of a solar photovoltaic tracking intergrated system

The net increase of global energy demand based on active economic development allow sustainable globalization growth and healthy fiscal condition. However, a significant increase to the existing high carbon emission in the atmosphere due to fossil fuel energy for manufacturing, production and transp...

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Main Author: Mansor, Abdullah Sulhi
Format: Thesis
Language:English
Published: 2020
Subjects:
Online Access:http://eprints.utm.my/id/eprint/92077/1/AbdullahSulhiMSChE2020.pdf.pdf
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spelling my.utm.920772021-08-30T04:17:34Z http://eprints.utm.my/id/eprint/92077/ Optimal design of a solar photovoltaic tracking intergrated system Mansor, Abdullah Sulhi TP Chemical technology The net increase of global energy demand based on active economic development allow sustainable globalization growth and healthy fiscal condition. However, a significant increase to the existing high carbon emission in the atmosphere due to fossil fuel energy for manufacturing, production and transportation process could foresee a bad environmental issue soon if no drastic approach is discussed and taken. Renewable energy especially solar energy can play a major role to reduce the dependency on fossil fuel energy in order to permit the continuity of power generation with zero carbon emission thus mitigate above mentioned concern. Solar panel system with solar tracker allow almost 30 % increase in terms of energy generation efficiency comparing to conventional solar panel system (Adarsh, Anand, & Singla, 2015). However, the capital investment on solar panel system especially with tracking device is not cheap and solar panel system efficiencies varies upon multiple technical specifications and environment factors. This study was conducted by extracted the location data including location longitude and latitude, energy load demand, surface reflectance factor, optical depth factor and sky diffuse factor. Next the technical utilized were extracted including the solar panel efficiency, inverter efficiency and battery charging and discharging efficiency. Then the model of process flow mechanism was established to be implemented in General Algebraic Modelling System (GAMS) optimization software. Based on the modeling implemented in GAMS, in this study for 30 houses demand, the fixed tilt angle system was optimized at 0 degree with the area of 476 m2 for the total cost of 167 864 USD. This model resulted 51% more power generated with 53% more total cost needed for dual axis tracker system model compared with fixed tilt angle system of the same load and location. 2020 Thesis NonPeerReviewed application/pdf en http://eprints.utm.my/id/eprint/92077/1/AbdullahSulhiMSChE2020.pdf.pdf Mansor, Abdullah Sulhi (2020) Optimal design of a solar photovoltaic tracking intergrated system. Masters thesis, Universiti Teknologi Malaysia. http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:139055
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Mansor, Abdullah Sulhi
Optimal design of a solar photovoltaic tracking intergrated system
description The net increase of global energy demand based on active economic development allow sustainable globalization growth and healthy fiscal condition. However, a significant increase to the existing high carbon emission in the atmosphere due to fossil fuel energy for manufacturing, production and transportation process could foresee a bad environmental issue soon if no drastic approach is discussed and taken. Renewable energy especially solar energy can play a major role to reduce the dependency on fossil fuel energy in order to permit the continuity of power generation with zero carbon emission thus mitigate above mentioned concern. Solar panel system with solar tracker allow almost 30 % increase in terms of energy generation efficiency comparing to conventional solar panel system (Adarsh, Anand, & Singla, 2015). However, the capital investment on solar panel system especially with tracking device is not cheap and solar panel system efficiencies varies upon multiple technical specifications and environment factors. This study was conducted by extracted the location data including location longitude and latitude, energy load demand, surface reflectance factor, optical depth factor and sky diffuse factor. Next the technical utilized were extracted including the solar panel efficiency, inverter efficiency and battery charging and discharging efficiency. Then the model of process flow mechanism was established to be implemented in General Algebraic Modelling System (GAMS) optimization software. Based on the modeling implemented in GAMS, in this study for 30 houses demand, the fixed tilt angle system was optimized at 0 degree with the area of 476 m2 for the total cost of 167 864 USD. This model resulted 51% more power generated with 53% more total cost needed for dual axis tracker system model compared with fixed tilt angle system of the same load and location.
format Thesis
author Mansor, Abdullah Sulhi
author_facet Mansor, Abdullah Sulhi
author_sort Mansor, Abdullah Sulhi
title Optimal design of a solar photovoltaic tracking intergrated system
title_short Optimal design of a solar photovoltaic tracking intergrated system
title_full Optimal design of a solar photovoltaic tracking intergrated system
title_fullStr Optimal design of a solar photovoltaic tracking intergrated system
title_full_unstemmed Optimal design of a solar photovoltaic tracking intergrated system
title_sort optimal design of a solar photovoltaic tracking intergrated system
publishDate 2020
url http://eprints.utm.my/id/eprint/92077/1/AbdullahSulhiMSChE2020.pdf.pdf
http://eprints.utm.my/id/eprint/92077/
http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:139055
_version_ 1709667381329002496
score 13.214268