In wind turbine (WT) system, the generator is the main component as it is used to convert the mechanical energy into the electrical energy. Mostly the fault happen in wind turbines was due to broken in the generator. Thus, the study of the generator model in wind turbines becoming more important to know the detailed characteristic of the generator to prevent the fault in wind turbines. The goal of this project is to develop a mathematical model of a generator in wind turbines that can be easily adjustable to apply any fault in the generator for WT dynamic system study. This is due to most of the developed WT models are either intellectual property protected or too simple in generator modelling. In this project, the mathematical model of wind turbine-based induction generator was developed using MATLAB/Simulink. The developed model wind turbine consists of aerodynamic model, wind turbine drive train based on a two mass models and induction generator model. The induction generator was developed based on electrical equations in Park’s reference frame. The model consists of electrical and mechanical subsystem. Then, the proposed model of the wind turbine with an induction generator was validated by using a wind farm with a doubly-fed induction generator (DFIG) detailed model in MATLAB software. The simulated response of mechanical torque, electrical torque, generator speed and power for both models was compared. The result shows that the simulated responses for both WT model had the same shape of the waveform which show the same dynamic behavior, even-though the steady-state values were not the same due to different setting or rating. In conclusion, the mathematical model of wind turbine system based on induction generator for fault study was successfully developed.
Skip Nav Destination
,
,
,
Article navigation
3 May 2021
PROCEEDINGS OF GREEN DESIGN AND MANUFACTURE 2020
23–24 July 2020
Arau, Malaysia
Research Article|
May 03 2021
Modelling and simulation of wind turbine based induction generator model using MATLAB/Simulink
Noor Fazliana Fadzail;
Noor Fazliana Fadzail
a)
School of Electrical System Engineering, Universiti Malaysia Perlis
, Malaysia
a)Corresponding author: [email protected]
Search for other works by this author on:
Samila Mat Zali;
Samila Mat Zali
School of Electrical System Engineering, Universiti Malaysia Perlis
, Malaysia
Search for other works by this author on:
Muhamad Asyraf Khairudin;
Muhamad Asyraf Khairudin
School of Electrical System Engineering, Universiti Malaysia Perlis
, Malaysia
Search for other works by this author on:
Noor Hasnizam Hanafi
Noor Hasnizam Hanafi
School of Electrical System Engineering, Universiti Malaysia Perlis
, Malaysia
Search for other works by this author on:
Noor Fazliana Fadzail
a)
Samila Mat Zali
Muhamad Asyraf Khairudin
Noor Hasnizam Hanafi
School of Electrical System Engineering, Universiti Malaysia Perlis
, Malaysia
a)Corresponding author: [email protected]
AIP Conf. Proc. 2339, 020013 (2021)
Citation
Noor Fazliana Fadzail, Samila Mat Zali, Muhamad Asyraf Khairudin, Noor Hasnizam Hanafi; Modelling and simulation of wind turbine based induction generator model using MATLAB/Simulink. AIP Conf. Proc. 3 May 2021; 2339 (1): 020013. https://doi.org/10.1063/5.0046120
Download citation file:
Pay-Per-View Access
$40.00
Sign In
You could not be signed in. Please check your credentials and make sure you have an active account and try again.
138
Views
Citing articles via
The implementation of reflective assessment using Gibbs’ reflective cycle in assessing students’ writing skill
Lala Nurlatifah, Pupung Purnawarman, et al.
Effect of coupling agent type on the self-cleaning and anti-reflective behaviour of advance nanocoating for PV panels application
Taha Tareq Mohammed, Hadia Kadhim Judran, et al.
Inkjet- and flextrail-printing of silicon polymer-based inks for local passivating contacts
Zohreh Kiaee, Andreas Lösel, et al.
Related Content
Investigating different passive methods for enhancement of low voltage ride through capability of Doubly Fed Induction Generator
J. Renewable Sustainable Energy (September 2013)
Hybrid control based on sliding mode fuzzy of DFIG power associated WECS
AIP Conf. Proc. (July 2019)
Control strategies of doubly fed induction generator-based wind turbine system with new rotor current protection topology
J. Renewable Sustainable Energy (August 2012)
Energy optimization for a wind DFIG with flywheel energy storage
AIP Conf. Proc. (July 2016)
Performance enhancement of wind energy conversion system based on DFIG in all operating regimes
AIP Conf. Proc. (December 2022)