Accès libre

Example of Matlab/Simulink Tool Usage for Evaluation of Wind Turbine Operation During Voltage Regulation and Reactive Power Regulation

À propos de cet article

Citez

A. S. Siddiqui et al., “Experimental Investigations of Hybrid Vertical Axis Wind Turbine”, in 4th International Conference on Energy, Environment and Sustainable Development 2016 (EESD 2016), Jamshoro, Pakistan, November 1-3, 2016. Search in Google Scholar

J. V. Akwa, H.A. Vielmo, and A.P. Petry, “A review on the performance of Savonius wind turbines,” Renewable and sustainable energy reviews, vol. 16, pp. 3054-3064, June 2012. Search in Google Scholar

X. Liu et al., “Vibration-induced aerodynamic loads on large horizontal axis wind turbine blades,” Appl. Energy, vol. 185, pp. 1109-1119, January 2017. Search in Google Scholar

R.H. Crawford, “Life cycle energy and greenhouse emissions analysis of wind turbines and the effect of size on energy yield,” Renewable and Sustainable Energy Reviews, vol. 13, pp. 2653-2660, July 2009. Search in Google Scholar

Vries, “A new approach to big wind turbines,” New Energy, vol.4, pp. 40-42, 2001. Search in Google Scholar

X. Tanga et al., “A Direct Approach of Design Optimization for Small Horizontal Axis Wind Turbine Blades,” Procedia CIRP, vol. 36, pp.12-16, December 2015. Search in Google Scholar

IEC Power Transformers – Transformers for Wind Turbine Applications, IEC 60076-16, 2011. Search in Google Scholar

G. Jose and R. Chaco, “A review on wind turbine transformer,” in International Conference on Magnetics, Machines & Drives (AICERA2014 iCMMD). Kottayam, India, July 24-26, 2014. Search in Google Scholar

J. Larsen, et al., “Experiences from Middelgrunden 40 MW offshore wind farm,” Copenhagen offshore wind conference. Denmark: Copenhagen, October 26-28, 2005. Search in Google Scholar

O. Wasynczuk, D. T. Man and J. P. Sullivan, “Dynamic behavior of a class of wind turbine generators during random wind fluctuations,” IEEE Transactions on Power Apparatus and Systems, vol. 6, pp. 2837-2845, June 1981. Search in Google Scholar

J. G. Slootweg, et al., “General model for representing variable speed wind turbines in power system dynamics simulations,” IEEE Transactions on power systems, vol. 18, pp. 144-151, February 2003. Search in Google Scholar

G. K. Singh, “Self-excited induction generator research-a survey,” Electric power system research, vol. 69, pp. 107-114, May 2004. Search in Google Scholar

V. Yaramasu et al., “High-Power Wind Energy Conversion Systems: State-of-the-Art and Emerging Technologies,” Proceedings of IEEE, vol. 103, pp. 740-788, May 2015. Search in Google Scholar

J. Guo, X. Cai, and Y. Gong, “Decoupled control of active and reactive power for a grid-connected doubly-fed induction generator,” in Third International Conference on Electric Utility Deregulation and Restructuring and Power Technologies, Nanjing, China, April 6-9, 2008. Search in Google Scholar

G. Tapia, and A. Tapia, “Wind generation optimization algorithm for a doubly fed induction generator,” IEE Proc-Gener. Transm. Distrib., vol. 152, pp. 253-263, March 2005. Search in Google Scholar

S. Müller, M. Deicke, and R. W. Doncker, “Doubly fed induction generator system for wind turbines,” IEEE Industry Application Magazine, vol. 8, pp. 26-33, May 2002. Search in Google Scholar