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Articles

A Neuro-Fuzzy Direct Torque Control Using Bus-Clamped Space Vector Modulation

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References

  • I. Takahashi, and T. Noguchi, “A new quick-response and high- efficiency control strategy of an induction motor,” IEEE Trans. Ind. Appl, Vol. 22, no. 5, pp. 820–7, Sept. 1986.
  • N. Venkataramana Naik, and S. P. Singh, “Improved dynamic performance of direct torque control at low speed over a scalar control,” in Proceedings of the 10th IEEE India International Conference Emerging Trends and Innovation in Technology (INDICON-13), IIT Bombay, Dec. 2013, pp. 1–6.
  • D. Telford, M. W. Dunnigan, and B. W. Williams, “A novel torque ripple reduction strategy for direct torque control,” IEEE Trans. Ind. Electron, Vol. 48, no. 4, pp. 867–70, Aug. 2001.
  • N. K. Swami Naidu, and B. Singh, “Direct power control of single VSC-based DFIG without rotor position sensor,” IEEE Trans. Ind. Appl., Vol. 50, no. 6, pp. 4152–63, Nov. 2014.
  • D. Casadei, et al., “Performance analysis of a speed-sensor less induction motor drive based on a constant switching-frequency DTC scheme,” IEEE Trans. Ind. Appl., Vol. 39, no. 2, pp. 476–84, Mar. 2003.
  • S. Madishetti, G. Bhuvaneswari, and B. Singh, “Improved power quality converter for direct torque control-based induction motor drives,” IET Power Electron.,Vol. 6, no. 2, pp. 276–86, Feb. 2013.
  • Y.-S. Lai, and J.-C. Lin, “New hybrid fuzzy controller for direct torque control induction motor drives,” IEEE Trans. Power Electron., Vol. 18, no. 5, pp. 1211–9, Sept. 2003.
  • W. Yao, H. Hu, and Z. Lu, “Comparisons of space-vector modulation and carrier-based modulation of multilevel inverter,” IEEE Trans. Power Electron., Vol. 23, no. 1, pp. 45–51, Jan. 2008.
  • M. Hamouda, H. F. Blanchette, K. Al-Haddad, and F. Fnaiech, “An efficient DSP-FPGA-based real-time implementation method of SVM algorithms for an indirect matrix converter,” IEEE Trans. Ind. Electron, Vol. 58, no. 11, pp. 5024–31, Nov. 2011.
  • M. Hamdi, M. Hamouda, F. Fnaiech, and K. Al-Haddad, “Space vector pulse width modulation of multilevel inverters: A new method for selecting the appropriate small hexagon,” in Proceedings of the38th Annual Conference on IEEE Industrial Electronics Society (IECON-12), Pacifico Yokohama, Yokohama, Oct. 2012, pp. 774–9.
  • R. K. Gupta, K. K. Mohapatra, A. Somani, and Ned Mohan “Space vector PWM for a direct matrix converter based open-end winding ac drives with enhanced capabilities,” in Proceedings of the 25th Annual IEEE Applied Power Electronics Conf. and Exposition (APEC-10), Palm Springs, CA, Feb. 2010, pp. 901–8.
  • R. K. Gupta, K. K. Mohapatra, and N. Mohan, “Open-end winding AC drives with enhanced reactive power support to the grid while eliminating switching common-mode voltage,” in Proceedings of the 35th of IEEE Industrial Electronics Conference (IECON '09), Alfandega Congress Center, Porto, Nov. 2009, pp. 700–7.
  • W. Khamsen, A. Aurasopon, and W. Sa-ngiamvibool “Power factor improvement and voltage harmonics reduction in pulse width modulation AC chopper using bee colony optimization,” IETE Tech. Rev., Vol. 30, pp. 3, May-June 2013.
  • P. Nor, and A. Fahsyar, “Optimization of design parameters for radio frequency identification tag rectifier using Taguchi methods,” IETE Tech. Rev., Vol. 29, no. 2, pp. 157--61, Mar–Apr. 2012.
  • Ramesh, et al, “Direct flux and torque control of induction motor drive for speed regulator using PI and fuzzy logic controllers,” in Proceedings of the IEEE International Conference on Advances in Engineering, Science and Management (ICAESM-2012), Chennai, Mar. 2012, pp. 288–95.
  • B. Singh, and S. G. Choudhuri, “Fuzzy logic based speed controllers for vector controlled induction motor drives,” IETE J. Res., Vol. 48, no. 6, pp. 441–7, Nov-Dec. 2002.
  • B. Singh, and S. G. Choudhuri, “DSP based implementation of vector controlled induction motor drive using sliding mode speed control strategy,” IETE J. Res., Vol. 50, no. 3, pp. 229–36, May-June 2004.
  • H. Lam, and H. Li, “Output-feedback tracking control for polynomial fuzzy-model-based control systems,” IEEE Trans. Ind. Electron., Vol. 60, no. 12, pp. 5830–40, Dec. 2013.
  • P. Vas, “Artificial intelligence based electrical machines and drives application of fuzzy, neural, fuzzy neural, and genetic algorithm based techniques,” New York: Oxford University Press, Mar. 1999, pp. 173–234.
  • N. Venkataramana Naik, and S. P. Singh, “A novel Type-2 fuzzy logic control of induction motor drive using scalar control,” in Proceedings of the 5th IEEE India International Conference on Power Electronics (IICPE-12), DTU, Delhi, Dec. 2012, pp. 1–5.
  • L. Romeral, et al., “Novel Direct Torque Control (DTC) scheme with fuzzy adaptive torque-ripple reduction,” IEEE Trans. Ind. Electron., Vol. 50, no. 3, pp. 487–92, Jun. 2003.
  • N. Venkataramana Naik, and S. P. Singh, “Improved dynamic performance of Type-2 fuzzy based DTC induction motor using SVPWM,” in Proceedings of the IEEE International Conference on Power Electronics, Drives and Energy Systems (PEDES-12), IISc, Bangalore, Dec. 2012, pp. 1–5.
  • G. Durgasukumar, and M. K. Pathak, “Torque ripple minimization of vector controlled VSI induction motor drive using neuro-fuzzy controller,” Int. J. Adv. Eng. Sci., Vol. 1, no. 1, pp. 40–3, 2011.
  • G. Durgasukumar, and M. K. Pathak, “Comparison of adaptive neuro-fuzzy based space vector modulation for two-level inverter,” Int. J. Electrical Power Energy Syst., Vol. 38, no. 1, pp. 9–19, Dec. 2012.
  • N. Venkataramana Naik, and S. P. Singh, “Improved dynamic performance of fuzzy based DTC induction motor using bus-clamped SVM,” in Proceedings of the 5th IEEE India International Conference on Power Electronics (IICPE-12), DTU, Delhi, Dec. 2012, pp. 1–6.
  • G. Narayanan, et al., “Space vector based hybrid PWM techniques for reduced current ripple,” IEEE Trans. Ind. Electron., Vol. 55, no. 4, pp. 1614–27, Apr. 2008.
  • H. Abhu-Rub, Arif Iqbal, and J. Guzinski, “High performance control of AC drives with Matlab/Simulink models,” John Wiley & Sons, Inc., 2012, pp. 56–83.

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