236
Views
16
CrossRef citations to date
0
Altmetric
Original Articles

Contribution to the Fault Diagnosis of a Doubly Fed Induction Generator for a Closed-loop Controlled Wind Turbine System Associated with a Two-level Energy Storage System

&
Pages 1727-1742 | Received 12 Nov 2013, Accepted 22 Jun 2014, Published online: 20 Oct 2014

REFERENCES

  • Eunshin, B., Lewis, N., and Yu, D., “Optimal maintenance strategies for wind turbine systems under stochastic weather conditions,” IEEE Trans Reliabil., Vol. 59, No. 2, pp. 393–404, 2010.
  • Lalami, A., and Wamkeue, R., “Synchronous generator off-line diagnosis approach including fault detection and estimation of failures on machine parameters,” Elect. Power Compon. Syst., Vol. 41, pp. 1501–1517, 2013.
  • Attoui, I., and Omeiri, A., “Modeling, control and fault diagnosis of an isolated wind energy conversion system with a self-excited induction generator subject to electrical faults,” Energy Convers. Manag., Vol. 82, pp. 11–26, 2014.
  • Varzaneh, S.G., Rastegar, H., and Gharehpetian, G.B., “A new three-mode maximum power point tracking algorithm for doubly fed induction generator based wind energy conversion system,” Elect. Power Compon. Syst., Vol. 42, No. 1, pp. 45–59, 2014.
  • Pandey, S.K., Kishor, N., and Mohanty, S.R., “Frequency regulation in hybrid power system using iterative proportional-integral-derivative H∞ controller,” Elect. Power Compon. Syst., Vol. 42, No. 2, pp. 132–148, 2014.
  • Shehata, E.G., “Active and reactive power control of doubly fed induction generators for wind energy generation under unbalanced grid voltage conditions,” Elect. Power Compon. Syst., Vol. 41, pp. 619–640, 2013.
  • Fogh, O.P., and Jakob, S., “Fault-tolerant control of wind turbines: a benchmark model,” IEEE Trans. Control Syst. Technol., Vol. 21, No. 4, pp. 1168–1182, 2013.
  • Bonnett, A.H., and Yung, C., “Increased efficiency versus increased reliability,” IEEE Ind. Appl. Mag., Vol. 14, No. 1, pp. 29–36, 2008.
  • Eltabach, M., and Charara, A., “Comparative investigation of electric signal analyses methods for mechanical fault detection in induction motors,” Elect. Power Compon. Syst., Vol. 35, No. 10, pp. 1161–1180, 2007.
  • Benbouzid, M.E. H., “A review of induction motors signature analysis as a medium for faults detection,” IEEE Trans. Indust. Electron., Vol. 47, No. 5, pp. 984–993, 2000.
  • Ghoggal, A., Sahraoui, M., Zouzou, S.E., and Razik, H., “A fast inductance computation devoted to the modeling of healthy, eccentric, and saturated induction motors,” Elect. Power Compon. Syst., Vol. 41, No. 10, pp. 1002–1022, 2013.
  • Douglas, H., Pillay, P., and Barendse, P., “The detection of interturn stator faults in doubly-fed induction generators,” IEEE 40th IAS Ann. Mtg. Conf. Rec. Indust. Appl. Conf., Vol. 2, pp. 1097–1102, 2005.
  • Zhong, J., and Huang, Y., “Time-frequency representation based on an adaptive short-time Fourier transform,” IEEE Trans. Signal Process., Vol. 58, No. 10, pp. 5118–5128, 2010.
  • Djurovié, I., Sejdié, E., and Jiang, J., “Frequency-based window width optimization for s-transform, “ AEU-Int. J. Electron. Commun., Vol. 62, No. 4, pp. 245–250, 2008.
  • Behzad, M., and Ghias, A.R., “Time-frequency feature extraction of a cracked shaft using an adaptive kernel,” Appl. Mechan. Mater., Vol. 5, pp. 37–44, 2006.
  • Pei, S.C., and Huang, S.G., “STFT with adaptive window width based on the chirp rate,” IEEE Trans. Signal Process., Vol. 60, No. 8, pp. 4065–4080, 2012.
  • Boashash, B., “Heuristic formulation of time-frequency distributions,” in Time Frequency Signal Analysis and Processing, A Comprehensive Reference, 1st ed., Oxford, UK: Elsevier, . Chap. 2, pp. 29–52, 2003.
  • Campos-Delgado, D.U., Murguía, J.S., Ramírez-Rodríguez, O., and Palacios, E., “Quantitative and redundant multivariable fault diagnosis in induction motors,” Elect. Power Compon. Syst., Vol. 39, No. 5, pp. 491–509, 2011.
  • Betta, G., Liguori, C., Paolillo, A., and Pietrosanto, A., “A DSP-based FFT-analyzer for the fault diagnosis of rotating machine based on vibration analysis,” IEEE Trans. Instrumentat. Measur., Vol. 51, No. 6, pp. 1316–1322, 2002.
  • Caballero, J. C. T., Gomis-Bellmunt, O., Montesinos-Miracle, D., Posada-Gómez, R., Pouresmaeil, E., and Aquino-Robles, J. A., “Digital control of a power conditioner for fuel cell/ super-capacitor hybrid system,” Elect. Power Compon. Syst., Vol. 42, No. 2, pp. 165–179, 2014.
  • Cortajarena, G.A., and Marcos, J.D., “Neural network model reference adaptive system speed estimation for sensorless control of a doubly fed induction generator,” Elect. Power Compon. Syst., Vol. 41, No. 12, pp. 1146–1158, 2013.
  • Zhao, C., Xue, D., and Chen, Y.Q., “A fractional order PID tuning algorithm for a class of fractional order plants,” Proc. IEEE ICMA, Vol. 42, pp. 216–221, Niagara Falls, Canada, 2005.
  • Oustaloup, A., Sabatier, J., and Lanusse, P., “From fractional robustness to CRONE control,” Fraction. Calculus Appl. Anal., Vol. 2, No. 1, pp. 1–30, 1999.
  • Oustaloup, A., Moreau, X., and Nouillant, M., “The CRONE suspension,” Control Eng. Practice, Vol. 4, No. 8, pp. 1101–1108, 1996.
  • Miller, K.S., and Ross, B., An Introduction to the Fractional Calculus and Fractional Differential Equations, New York: Wiley, 1993.
  • Lurie, B. J., “Three-parameter tunable tilt-integral-derivative (TID) controller,” US Patent US5371670, 1994.
  • Ricchiuto, D., Liserre, M., Mastromauro, R., Dell’Aquila, A., and Pigazo, A., “Fractional-order based droop control of an universal wind-turbine system,” Proceedings of the European Power Electronics and Applications Conference (EPE), pp. 1–10, Birmingham, England, UK, 30 August–1 September 2011.
  • Jiacai, H., Hongsheng, L., Fulin, T., and Di, L., “Fractional order sliding mode controller for the speed control of a permanent magnet synchronous motor,” Proceedings of the Chinese Control and Decision Conference (CCDC), pp. 1203–1208, Taiyuan, 23–25 May 2012.
  • Qu, L., and Qiao, W., “Constant power control of DFIG wind turbines with supercapacitor energy storage,” IEEE Trans. Industry Appl., Vol. 47, No. 1, pp. 359–367, 2011.
  • Abbey, C., and Joos, G., “Supercapacitor energy storage for wind energy applications,” IEEE Trans. Industry Appl., Vol. 43, No. 3, pp. 769–776, 2007.
  • IEEE Power & Energy Society., “IEEE recommended practice for the characterization and evaluation of emerging energy storage technologies in stationary applications,” IEEE Standard 1679-2010, 2010.
  • Díaz-González, F., Sumper, A., Gomis-Bellmunt, O., and Villafáfila-Robles, R., “A review of energy storage technologies for wind power applications,” Renew. Sustain. Energy Rev., Vol. 16, No. 4, pp. 2154–2171, 2012.
  • McDowall, J., “Integrating energy storage with wind power in weak electricity grids,” J. Power Sources, Vol. 162, No. 2, pp. 959–964, 2006.
  • Sharma, P., and Bhatti, T.S., “A review on electrochemical double-layer capacitors,” Energy Convers. Manag., Vol. 51, No. 12, pp. 2901–2912, 2010.
  • Dong, Z., Kennedy, S.J., and Wu, Y., “Electrospinning materials for energy-related applications and devices,” J. Power Sources, Vol. 196, No. 11, pp. 4886–4904, 2011.
  • Tan, X., Li, Q., and Wang, H., “Advances and trends of energy storage technology in microgrid,” Elect. Power Energy Syst., Vol. 44, No. 1, pp. 179–191, 2013.
  • Luo, Y., Quan Chen, Y., Yang Wang, C., and Guo Pi, Y., “Tuning fractional order proportional integral controllers for fractional order systems,” J. Process Control, Vol. 20, No. 7, pp. 823–831, 2010.
  • Bode, H.W., Network Analysis and Feedback Amplifier Design, New York: Van Nostrand, 1945.
  • Oustaloup, A., Levron, F., Mathieu, B., and Nanot, F. M., “Frequency-band complex non integer differentiator: Characterization and synthesis,” IEEE Trans. Circuits Syst. I: Fund. Theory Appl., Vol. 47, No. 1, pp. 25–39, 2000.
  • Podlubny, I., “Fractional-order systems and PIλDμ controller,” IEEE Trans. Automat. Control, Vol. 44, No. 1, pp. 208–214, 1999.
  • Franklin, G., Powell, J., and Naeini, A., “The frequency-response design method,” in Feedback Control of Dynamic Systems, Reading, MA: Addison-Wesley, Chap. 6, pp. 314–413, 1986.
  • Chen, Y.Q., and Moore, K.L., “Relay feedback tuning of robust PID controllers with iso-damping property,” IEEE Trans. Syst. Man Cybernet., Part B, Vol. 35, No. 1, pp. 23–31, 2005.
  • Li, H.S., Luo, Y., and Chen, Y.Q., “A fractional order proportional and derivative (FOPD) motion controller: Tuning rule and experiments,” IEEE Trans. Control Syst. Technol., Vol. 18, No. 2, pp. 516–520, March 2010.
  • Gritli, Y., Stefani, A., Rossi, C., Filippetti, F., and Chatti, A., “Experimental validation of doubly fed induction machine electrical faults diagnosis under time-varying conditions,” Elect. Power Syst. Res., Vol. 81, No. 3, pp.751–766, 2011.
  • Imberger, J., and Boashash, B., “Application of the Wigner-Ville distribution to temperature gradient microstructure: A new technique to study small-scale variations,” J. Phys. Oceanogr., Vol. 16, No. 12, pp. 1997–2012, December 1986.
  • Storey, L.R. O., “An investigation of whistling atmospherics,” Phil. Trans. Roy. Soc., Vol. 246, No. 908, pp. 113–141, July 1953.
  • Mirecki, A., Roboam, X., and Richardeau, F., “Architecture complexity and energy efficiency of small wind turbines,” IEEE Trans. Indust. Electron., Vol. 54, No. 1, pp. 660–670, 2007.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.