151 REFERENCES 1. Ahmet M. Hava, Seung-Ki Sul, Russel J. Kerkman and Thamas A. Lipo, “Dynamic Overmodulation Characteristics of Triangle Intersection PWM Methods”, IEEE Trans. Ind. Appl., Vol. 35, No.4, pp. 896-907, 1999. 2. Aleksandar Nikolic and Borislav Jeftenic, “Speed Sensorless Direct Torque Control Implementation in a Current Source Inverter Fed Induction Motor Drive”, 35th Annul IEEE Power Electronics Specialists Conference, Aachen, Germany, pp. 2843-2848, 2004. 3. Aleksandar Nikolic and Borislav Jeftenic, “Different Methods for Direct Torque Control of Induction Motor Fed from Current Source Inverter”, Wseas Trans. Circuits And Systems, pp.738-748, 2008. 4. Alfredo Munoz-Garcia, Thomas A. Lipo and Donald W. Novotny, “A New Induction Motor V/f Control Method Capable of HighPerformance Regulation at Low Speeds”, IEEE Trans. Ind. Appl., Vol. 34, No. 4, pp.813-821, 1998. 5. Babaei, M. and Heydari, H. “Direct Torque Control of Pulse Width Modulation Current Source Inverter-fed Induction Motor by Novel Switching Method”, Taylor & Francis: Electric Power Components and Systems, pp. 38:514-532, 2010. 6. Bimal K. Bose, Modern Power Electronics and AC Drives, Prentice Hall, New Jersy, 2002. 7. Bimal K. Bose, Power Electronics and Motor Drives: Advances and Trends, Academic Press, 2006. 8. Bin Wu, Dewan, S.B. and Slemon, G.R. “Eigenvalue Sencitivity Analysis of GTO-CSI Induction Machine Drives”, IEEE Trans. Ind. Appl., Vol. 30, No. 3, pp. 767-775, 1994. 9. Bin wu, High-Power Converters and AC Drives, IEEE Press, A John Wiley & Sons, Inc., Publication, 2006. 152 10. Bin Wu, Shaahi B. Dewan and Gordon R. Slemon, “PWM CSI Inverter Induction Motor Drives”, IEEE Trans. Ind. Appl., Vol. 28, No. 1, pp. 64-71, 1992. 11. Blaschke, F. “A new method for the structural decoupling of A.C. induction machines”, in Conf. Rec. IFAC, Duesseldorf, Germany, pp. 1-15, 1971. 12. Blaschke, F. “The principle of field-orientation as applied to the transvector closed-loop control system for rotating-field machines”, Siemens Rev., Vol. 34, pp. 217-220, 1972. 13. Bong-Hwan Kwon and Byung-duk Min, “A Fully Software-Controlled PWM Rectifier with Current Link”, IEEE Trans. Ind. Electron., Vol. 40, No.3, pp.355-363, 1993. 14. Bowes, S.R. and Bullough, R.I. “Harmonic Minimisation In Microprocessor Controlled Current Fed PWM Inverter Drives”, PROC.IEE, Vol. 134, Pt. B, No. 1, pp.25-41, 1987. 15. Casadei, D., Serra, G., Tani, A. and Zarri, L. “Assessment of direct torque control for induction motor drives”, Bulletin of the polish academy of sciences technical sciences, Vol. 54, No. 3, pp.237-254, 2006. 16. Cruz, C. Gallegos, M.A., Alvarez, R. and Pazos, F. “Comparison Of Several Nonlinear Controllers For Induction Motors”, IEEE International Power Electronics Conference-CIEP, pp. 134-139, 2004. 17. Depenbrock, M. “Direct self-control (DSC) of inverter-fed induction machine”, IEEE Trans. Power Electron, Vol. 3, No. 4, pp. 420-429, 1988. 18. Domenico Casadei, Francesco Profumo, Giovanni Serra and Angelo Tani, “FOC and DTC: Two Viable Schemes for Induction Motors Torque Control”, IEEE Trans. Power Electron, Vol. 17, No. 5, pp.779-787, 2002. 19. Dong-Choon Lee, Jun-Keun Ji and Seung-Ki Sul, “State Feedback Current Regulation with a Full-Order Observer for GTO Inverter Fed Induction Motor Drives”, International Conference on Industrial Electronics, Control, and Instrumentation-IECON’93, Vol.2, pp.818-823, 1993. 153 20. Elangovan, S. and Srinivasan, G. “New algorithm for the optimal stabilization of linear systems using pole assignment technique”, Proc. IEE., Vol.122, pp.1316-1319, 1975. 21. Enjeti, P.N., Ziogas, P.D. and Lindsay, J.F. “A Current Source PWM Inverter With Instantaneous Current Control Capability”, Conference Record of the 1988 IEEE Industry Applications Society Annual Meeting, Vol. 10, pp.927-933, 1988. 22. Enjeti, P.N., Ziogas, P.D. and Lindsay, J.F. “A Current Source PWM Inverter With Instantaneous Current Control Capability,” IEEE Trans. Ind. Appl., Vol. 27, pp. 893-643, 1991. 23. Ertem, S. and Baghzouz, Y. “Simulation of Induction Machinery for Power System Studies”, IEEE Trans. on Energy Conversion. Vol. 4, No.1, pp. 88-94, 1989. 24. Gerard Ledwich, “Current Source Inverter Modulation”, IEEE Trans. Power Electron., Vol. 6, No. 4, pp.618-623, 1991. 25. Geza Joos, Gerry Moschopoulos and Phoivos D. Ziogas, “A High Performance Current Source Inverter”, IEEE Trans. Power Electron, Vol. 17, No. 5, pp. 571-579, 1993. 26. Giuseppe S. Buja and Marian P. Kazmierkowski, “Direct Torque Control of PWM Inverter-Fed AC Motors—A Survey”, IEEE Trans. Ind. Electron., Vol. 51, No. 4, pp.744-757, 2004. 27. Holmes, D.G. and Lipo, T.A. “Pulse Width Modulation for Power Converters”, published by IEEE Press/Wiley-Interscience, 2003. 28. James N. Nash, “Direct Torque Control, Induction Motor Vector Control Without an Encoder”, IEEE Trans. Ind. Appl., Vol. 33, No. 2, pp.333-341, 1997. 29. Jose Andres Santisteban and Richard M. Stephan, “Vector Control Methods for Induction Machines: An Overview,” IEEE Transactions on Education, Vol. 44, No. 2, pp. 170-175, 2001 30. Jose R. Espinoza and Geza Joos, “A Current-Source-Inverter-Fed Induction Motor Drive System with Reduced Losses”, IEEE Trans. Ind. Appl., Vol. 34, No. 4, pp.796-805, 1998. 31. Kenneth P. Phillips, “Current-Source Converter for AC Motor Drives”, IEEE Trans. Ind. Appl., Vol. IA-8, No.6, pp.679-683, 1972. 154 32. Khaligh, A., Nagel, N. and Emadi, A. “A detailed modular approach for induction machines considering iron loss”, 31st Annual IEEE Industrial Electronics Society Conference, IECON 2005. 33. Koga, K., Ueda, R. and Sonoda, T. “Achievement of high performances for general purpose inverter drive induction motor system”, Conf. Rec. IEEE-IAS Annu. Meeting, pp. 415-425, 1989. 34. Krause, P. C., Wasynczuk, O. and Sudhoff S. D. Analysis of Electric Machines and Drive Systems, Wiley-IEEE Press, New York, 2002. 35. Krause, P.C. and Thomas, C.H. “Simulation of Symmetrical Induction Machinery”, IEEE Trans. Power Appara. and Sys. Vol. PAS-84, No. 11, pp.1038-1053, 1965. 36. Krishnan, R. Electric Motor Drives Modeling, Analysis, and Control, Prentice Hall of India, 2002. 37. Krishnan, R., James F. Lindsay and Victor R. Stefanovic, “Design of Angle-Controlled Current Source Inverter-Fed Induction Motor Drive”, IEEE Trans. Ind. Appl., Vol. IA-19, No. 3, pp.370-378, 1983. 38. Kumar, ABR. and Richards, EF. “An optimal control law by eigenvalue assignment for improved dynamic stability in power systems”, IEEE Trans. Power App. and Syst. Vol.PAS-101, No. 6, pp.1570-1577, 1982. 39. Lavers, J.D. and Cheung, R.W.Y. “A software package for the steady state and dynamic simulation of induction motor drives”, IEEE Power Engineering Review, Vol.PER-6, No.5, pp 46-47, 1986 40. Marian P. Kazmierkowski and Hans-Jurgen Kopcke, “A simple Control System for Current Source Inverter-Fed Induction Motor Drives”, IEEE Trans. Ind. Electro App, Vol. IA-21, No. 4, pp. 617-623, 1985. 41. Marian P. Kazmierkowski, “Control Philosophies of PWM Inverter-Fed Induction Motors”, International Conference on Industrial Electronics, Control and Instrumentation, IECON 97, Vol.1, pp.P16-P26, 1997. 42. Masahiro Kaimoto, Makoto Hashii, Takao Yanase and Takayoshi Nakano, “Performance Improvement of Current Source Inverter-Fed Induction Motor Drives”, IEEE Trans. Ind. Appl., Vol. IA-18, No. 6, pp.703-711, 1982. 155 43. Meziane.Salima, Toufouti.Riad and Benalla.Hocine, “Applied InputOutput Linearizing Control for High-Performance Induction Motor”, Journal of Theoretical and Applied Information Technology, pp.7-15, 2008. 44. Mika Salo and Heikki Tuusa, “Vector-controlled PWM current-sourceinverter-fed induction motor drive with a new stator current control method”, IEEE Trans. Ind. Electron., Vol. 52, No. 2, pp. 523-531, 2005. 45. Mitsuyuki Hombu, Shigeta Ueda and Akiteru Ueda, “A Current Source GTO Inverter with Sinusoidal Inputs and Outputs”, IEEE Trans. Ind. Electro. App., Vol. IA-23, No. 2, pp.247-255, 1987. 46. Mummadi Veerachary, “Optimal Control Strategy For A Current Source Inverter Fed Induction Motor”, Elsevier: Computers and Electrical Engineering, Vol. 28, pp. 255-267, 2002. 47. Murai, Y., Watanabe, T. and Iwasaki, H. “Waveform distortion and correction circuit for PWM inverters with switching lag-times”, IEEE Trans. Ind. Appl., Vol. IA-23, pp. 881-886, 1987. 48. Nonaka, S. and Neba, Y. “New GTO Current Source Inverter with Pulse Width Modulation Techniques”, IEEE Trans. Ind. Appl., Vol. 22 No. 4, pp. 666-672, 1986. 49. Rasappa Palaniappan, Joseph Vithayathil and Samir K. Datta, “Principle of a Dual Current Converter for AC Motor Drives”, IEEE Trans. Ind. Appl., Vol. IA-15, No. 4, pp.445-452, 1979. 50. Riccardo Marino, Sergei Peresada, and Paolo Valigi, “Adaptive Input Output Linearizing Control of Induction Motors”, IEEE Trans. Automa. Con., Vol. 38, No. 2, pp. 208-221, 1993. 51. Riccardo Marino, Sergei Peresada, and Patrizio Tomei, “Output Feedback Control of Current-Fed In Motors with Unknown Rotor Resistance”, IEEE Trans. Cont. Syst. Tech., Vol. 4, No. 4, pp. 336-347, 1996. 52. Satoshi Ogasawara and Hirofumi Akagi, “The Generalized Theory of Indirect Vector Control for AC Machines”, IEEE Trans. Ind. Appl., Vol. 24, No. 3, pp. 470-478, 1988. 156 53. Sepe, R. and Lang, J. “Inverter nonlinearities and discrete-time vector current control”, IEEE Trans. Ind. Appl., Vol. 30, No. 1, pp. 62-70, 1994. 54. Silverio Bolognani and Giuseppe S. Buja, “DC Link Current Control for High-Performance CSIM Drives” IEEE Trans. Ind. Appl., Vol. IA-23, No. 6, pp. 1043-1047, 1987. 55. Smith, H W. and Davison, E J. “Design of industrial regulators Integral feedback and feedforward control”, PROC.IEE, Vol.119, No. 8, pp. 1210-1216, 1972. 56. Solheim, OA. “Design of optimal control systems with prescribed eigenvalues”, Int. J. Control, Vol.15, pp143-160, 1972. 57. Takahashi, I. and Noguchi, T. “A New Quick-Response and HighEfficiency Control Strategy of an Induction Motor”, IEEE Trans. Ind. Appl., Vol. IA-22, No. 5, pp.820–827, 1986. 58. Teruo Ito, Tadashi Yamaguchi, Ryuzo Ueda, Takuro Mochizuki and Sigeo Takata, “Analysis of Field Orientation Control of Current Source Inverter Drive Induction Motor Systems” IEEE Trans. Ind. Appl., Vol. IA-19, No. 2, pp.206-210, 1983. 59. Thomas A. Lipo and Edward P. Cornell, “State-Variable Steady-State Analysis Of A Controlled Current Induction Motor Drive”, IEEE Trans. Ind. Appl., Vol. IA-11, No. 6, pp.704–712, 1975. 60. Vas, P. Electrical Machines and Drives. London, U.K.: Oxford Univ. Press, 1992. 61. Wonham, W.H. “On Pole Assignment Technique in Multi-Input Controllable Linear Systems”, IEEE Trans. Automat. Contr., Vol. AC12. pp. 660-665, 1967. 62. Yidan Li, Dewei Xu and Bin Wu, “Real-Time Simulator for Medium Voltage Drives Fed by Current Source Inverter,” 35th Annul IEEE Power Electronics Specialists Conference, Germany, pp. 3547-3552, 2004.