Analysis and Insight Based on Detailed Modeling
Keywords:
Doubly fed induction generator (DFIG), eigenvalue, oscillations, stability, wind farm, wind turbine generator (WTG).Abstract
This paper presents modelling and examination of system oscillations in a wind farm. The way to deal with demonstrating utilizes point by point representation of a wind turbine generator and accumulation system including STATCOM power converter system control, encouraging a far reaching examination of the wind farm system. Different modes are grouped by recurrence of wavering. The point by point modular examination is utilized to describe the basic modes. Time-domain simulation also confirms the presence of these modes. The impact of wind farm working conditions and STATCOM control tuning on basic oscillatory modes are likewise surveyed and talked about in point of interest.
References
- Alexander. (2012, Jan. 11). Wind Power Losses from Grid Disconnections up by as Much as Sixty Nine Percent [Online]. Available: http://www.wind-energie.de/en/infocenter/articles/wind-power-lossesgrid- disconnections-much-69-percent
- Sara. (2014, Jun. 3). Bard 1 Transmission Problems Continue [Online]. Available: http://www.windpoweroffshore.com/article/1297004/bard-1- transmission-problems-continue
- Tapia, A. Tapia, and J. X. Ostolaza, "Two alternative modeling approaches for the evaluation of wind farm active and reactive power performances," IEEE Trans. Energy Convers., vol. 21, no. 4, pp. 909-920, Dec. 2006.
- Akhmatov and H. Knudsen, "An aggregate model of a grid connected, large-scale, offshore wind farm for power stability investigations: Importance of windmill mechanical system," Int. J. Elect. Power Energy Syst., vol. 24, no. 9, pp. 709-717, Nov. 2002.
- Ben Kilani and M. Elleuch, "Simplified modelling of wind farms for voltage dip transients," in Proc. 9th Int. Multi-Conf. Syst. Signals Devices (SSD), Mar. 2012, pp. 1-6.
- Rudion, Z. Styczynski, A. Orths, and O. Ruhle, "MaWind-Tool for the aggregation of wind farm models," in Proc. Power Energy Soc. Gen. Meeting Convers. Del. Elect. Energy 21st Century, Jul. 20-24, 2008, pp. 1-8.
- Perdana and C. Ola, "Aggregated models of a large wind farm consisting of variable speed wind turbines for power system stability studies," in Proc. 8th Int. Workshop Large-Scale Integr. Wind Power Power Syst. Transmiss. Netw. Offshore Wind Farms, 2009, pp. 568-573.
- Mei, "Small-signal modelling and analysis of doubly-fed induction generators in wind power applications," Ph.D. dissertation, Department of Electrical and Electronic Engineering, Imperial College London, London, U.K., 2008.
- Quinonez-Varela, G. Ault, O. Anaya-Lara, and J. McDonald, "Electrical collector system options for large offshore wind farms," IET Renew. Power Gener., vol. 1, no. 2, pp. 107-114, Jun. 2007.
- Lin, J. Wen, J. Liang, S. Cheng, M. Yao, and N. Li, "A three-terminal HVDC system to bundle wind farms with conventional power plants," IEEE Trans. Power Syst., vol. 28, no. 3, pp. 2292-2300, Aug. 2013.
- Dutta and T. Overbye, "A clustering based wind farm collector system cable layout design," in Proc. IEEE Power Energy Conf. (PECI’11), Feb. 2011, pp. 1-6.
- Kuenzel, L. P. Kunjumuhammed, B. C. Pal, and I. Erlich, "Impact of wakes on wind farm inertial response," IEEE Trans. Sustain. Energy, vol. 5, no. 1, pp. 237-245, Jan. 2014
- Marinopoulos et al., "Investigating the impact of wake effect on wind farm aggregation," in Proc. IEEE Power Tech, Trondheim, Norway, Jun. 19-23, 2011, pp. 1-5.
- Hao, Y. Zhang, X. Li, and Y. Yuan, "Equivalent wind speed model in wind farm dynamic analysis," in Proc. 4th Int. Conf. Electr. Utility Deregul. Restruct. Power Technol. (DRPT), Jul. 6-9, 2011, pp. 1751-1755.
- K. Sethi, D. Deb, andM.Malakar, "Modeling of a wind turbine farm in presence of wake interactions," in Proc. Int. Conf. Energy Autom. Signal (ICEAS), Dec. 28-30, 2011, pp. 1-6.
- Muljadi et al., "Equivalencing the collector system of a large wind power plant," in Proc. IEEE Power Eng. Soc. Gen. Meeting, 2006, p. 9.
Downloads
Published
Issue
Section
License
Copyright (c) IJSRSET

This work is licensed under a Creative Commons Attribution 4.0 International License.