Prediction of electrical and thermal power of a PEM Fuel cell by programming using MATLAB-Simulink / Mohd Hafizuddin Hamdan

Hamdan, Mohd Hafizuddin (2010) Prediction of electrical and thermal power of a PEM Fuel cell by programming using MATLAB-Simulink / Mohd Hafizuddin Hamdan. Degree thesis, Universiti Teknologi MARA.

Abstract

A final year project topic has been selected. It is about "Prediction of Electrical and Thermal Power of a PEM Fuel Cell by Programming Using MATLAB-Simulink". The main propose of this project is to simulate and predict the electrical power produced by the Fuel Cell in a certain condition such as operating temperature, pressure, and other input parameters that operate the PEM Fuel Cell. In extra, the losses power of the Fuel Cell in term of heat also obtained. By the way, the heat waste will be treating by cooling system in the thermal power. Hence, the Fuel Cell's temperature will be ensuring in the appropriate range (50 - 100°C). The project started by obtaining the mathematical models of the electrical and thermal power from previous researches and journals. Then, all the parameters that involved in the mathematical models will be identified. In further actions, the mathematical models will be converted into MATLAB-Simulink models. Once the Simulink models generated Grapical User Interface (GUI) will be follow. The results obtain will be validate by doing some own case study and comparing them to related journals that related to this study.

Metadata

Item Type: Thesis (Degree)
Creators:
Creators
Email / ID Num.
Hamdan, Mohd Hafizuddin
2006688892
Contributors:
Contribution
Name
Email / ID Num.
Thesis advisor
Remeli, Muhammad Fairuz
UNSPECIFIED
Subjects: T Technology > TJ Mechanical engineering and machinery > Machine design and drawing
T Technology > TJ Mechanical engineering and machinery > Hydraulic machinery
Divisions: Universiti Teknologi MARA, Shah Alam > Faculty of Mechanical Engineering
Programme: Bachelor Engineering (Hons) (Mechanical)
Keywords: PEM fuel cell, MATLAB-simulink, Thermal power
Date: 2010
URI: https://ir.uitm.edu.my/id/eprint/36610
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