DESIGN AND APPLICATION OF SOLAR PV SYSTEM SOFTWARE

SITI HUSMIYATIE, AKBAR JAHAN (2020) DESIGN AND APPLICATION OF SOLAR PV SYSTEM SOFTWARE. [Final Year Project Report] (Unpublished)

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Abstract

Solar energy has an immense capacity to develop as a single type of green renewable energy source that can be used continuously for a lifetime. It can be harvested indefinitely without causing much harm to the environment if appropriately conducted. Over the years, solar energy has risen significantly as a result of the improvement of renewable energy in order to meet the projected growth in energy demand. Plus, the environmental change is concerned. Although renewable energy such as solar is available in abundant volume, it is not continuously available at all times as the period of harvesting solar source is different depending on its location and geographic characteristics. There is an important connection between the characteristics of photovoltaic cells' production and the increase in external environmental factors. Nowadays, the efficiency of PV cells is not only poor but also costly on a wide scale of production. Hence, it is very important to improve the effectiveness of its devices and to choose the most appropriate design for the solar energy system. This thesis discusses the conceptualization of computer model to ease the process of assessing the design of off-grid connected power systems standalone system. Customized control interface is implemented by using the LabVIEW software to quantify the potential performance improvement of the design.

Item Type: Final Year Project Report
Additional Information: Project report (BEH) -- Universiti Malaysia Sarawak, 2020.
Uncontrolled Keywords: solar source, enviromental factors, computer model
Subjects: T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions: Academic Faculties, Institutes and Centres > Faculty of Engineering
Depositing User: Dan
Date Deposited: 27 Dec 2021 05:13
Last Modified: 27 Dec 2021 05:13
URI: http://ir.unimas.my/id/eprint/37551

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