Abstract:
The paper describes the dynamic performance of a wind-driven reluctance generator connected to an electric power network of large capacity. A controller that makes possib...Show MoreMetadata
Abstract:
The paper describes the dynamic performance of a wind-driven reluctance generator connected to an electric power network of large capacity. A controller that makes possible the regular flow of power to the network has been considered. Controller parameters that successfully suppress unwanted mechanical and electrical stresses and overshoots due to wind gusts, have been estimated. The performance of the controller has also been examined for short-circuit faults at the terminals of the generators.
Published in: IEEE Transactions on Energy Conversion ( Volume: 12, Issue: 4, December 1997)
DOI: 10.1109/60.638861
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Cites in Papers - IEEE (3)
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1.
Li Wang, Long-Yi Chen, "Reduction of Power Fluctuations of a Large-Scale Grid-Connected Offshore Wind Farm Using a Variable Frequency Transformer", IEEE Transactions on Sustainable Energy, vol.2, no.3, pp.226-234, 2011.
2.
Souvik Guha, Narayan C. Kar, "Saturation Modeling and Stability Analysis of Synchronous Reluctance Generator", IEEE Transactions on Energy Conversion, vol.23, no.3, pp.814-823, 2008.
3.
Wu Xueguang, Wang Weisheng, Dai Huizhu, Chen Yunping, "Application of models of the wind energy conversion system to wind power dynamic analysis", POWERCON '98. 1998 International Conference on Power System Technology. Proceedings (Cat. No.98EX151), vol.2, pp.1406-1411 vol.2, 1998.
Cites in Papers - Other Publishers (7)
1.
Angel Gaspar Gonzalez-Rodriguez, Juan Manuel Roldan-Fernandez, Luis Miguel Nieto-Nieto, "Unveiling Inertia Constants by Exploring Mass Distribution in Wind Turbine Blades and Review of the Drive Train Parameters", Machines, vol.11, no.9, pp.908, 2023.
2.
Joseph S. Sedky, Haitham M. Yassin, H. H. Hanafy, Farouk Ismail, "Voltage and frequency control of standalone wind-driven self-excited reluctance generator using switching capacitors", Journal of Electrical Systems and Information Technology, vol.8, no.1, 2021.
3.
Bhim Singh, Ram Niwas, "Performance of synchronous reluctance generator for DG set based standalone supply system", Electric Power Systems Research, vol.133, pp.93, 2016.
4.
Radian Belu, Encyclopedia of Energy Engineering and Technology, Second Edition, pp.2224, 2015.
5.
Y.H.A. Rahim, J.E. Fletcher, N.E.A.M. Hassanain, "Performance analysis of salient-pole self-excited reluctance generators using a simplified model", IET Renewable Power Generation, vol.4, no.3, pp.253-260, 2010.
6.
"An Analysis of Daylighting Performance of Light Shelf in Office Building", Journal of the Korean Institute of Illuminating and Electrical Installation Engineers, vol.22, no.8, pp.1, 2008.
7.
"Simulation for Characteristics Analysis of Grid-connected Wind Power Generation System on MATLAB/Simulink", Journal of the Korean Institute of Illuminating and Electrical Installation Engineers, vol.22, no.8, pp.18, 2008.