Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor

Microturbine is one of the Distributed Generation (DG). DG resource is small ranging about ten kW to fractional of MW. Nowadays, enhancement in technology of microturbine has become most promising technologies for small modular installation because desired features such as simplicity in mechanism, c...

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Main Author: Mansor, Khairul Raffiq
Format: Thesis
Language:English
Published: 2009
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/79079/1/79079.pdf
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spelling my-uitm-ir.790792024-08-20T15:59:45Z Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor 2009 Mansor, Khairul Raffiq QA Mathematics Microturbine is one of the Distributed Generation (DG). DG resource is small ranging about ten kW to fractional of MW. Nowadays, enhancement in technology of microturbine has become most promising technologies for small modular installation because desired features such as simplicity in mechanism, compact size, light weight, low emission and ability to operate with a wide range of fuels, as well as combined heat and power possibilities. In order to understand the microturbine's operation, their efficiency model is required. This thesis presents the modelling of microturbine generation system using MATLAB/SIMULINK. Dynamic simulation model of a microturbine was conducted by implementing the SimPowerSystem in MATLAB/SIMULINK. Each component in the microturbine is represented by mathematical model. By using the model, signal analysis is conducted during start-up of the model. The model is conducted in grid-connected mode and islanded mode. The simulation shows the operation of microturbine in both modes. 2009 Thesis https://ir.uitm.edu.my/id/eprint/79079/ https://ir.uitm.edu.my/id/eprint/79079/1/79079.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Musirin, Ismail
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Musirin, Ismail
topic QA Mathematics
spellingShingle QA Mathematics
Mansor, Khairul Raffiq
Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor
description Microturbine is one of the Distributed Generation (DG). DG resource is small ranging about ten kW to fractional of MW. Nowadays, enhancement in technology of microturbine has become most promising technologies for small modular installation because desired features such as simplicity in mechanism, compact size, light weight, low emission and ability to operate with a wide range of fuels, as well as combined heat and power possibilities. In order to understand the microturbine's operation, their efficiency model is required. This thesis presents the modelling of microturbine generation system using MATLAB/SIMULINK. Dynamic simulation model of a microturbine was conducted by implementing the SimPowerSystem in MATLAB/SIMULINK. Each component in the microturbine is represented by mathematical model. By using the model, signal analysis is conducted during start-up of the model. The model is conducted in grid-connected mode and islanded mode. The simulation shows the operation of microturbine in both modes.
format Thesis
qualification_level Bachelor degree
author Mansor, Khairul Raffiq
author_facet Mansor, Khairul Raffiq
author_sort Mansor, Khairul Raffiq
title Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor
title_short Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor
title_full Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor
title_fullStr Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor
title_full_unstemmed Modelling of microturbine generation system using matlab/simulink / Khairul Raffiq Mansor
title_sort modelling of microturbine generation system using matlab/simulink / khairul raffiq mansor
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2009
url https://ir.uitm.edu.my/id/eprint/79079/1/79079.pdf
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