REFERENCES. 6. Bose B. K. (1981), Adjustable Speed AC Drive Systems, IEEE Press.

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1 135 REFERENCES 1. Adrian David Cheok and Yusuke Fukuda. (2002), A New Torque and Flux Control Method for Switched Reluctance Motor Drives, IEEE Transaction on Power Electronics. Vol.17, No.4, pp Bae H.K. (2000), Control of Switched Reluctance Motors Considering Mutual Inductance, Ph.D. thesis, The Bradley Department of Electrical and Computer Engineering, Virginia Tech., Blacksburg, VA. 3. Bae, H.K. and Krishnan R. (1996), A study of current controllers and development of a novel current controller for high performance SRM drives, IEEE Ind. Appl. Soc. Ann. Mtg. Conf. Rec., pp Boldea L. and Nasar S.A. (1988), Torque Vector Control (TVC) A class of fast and robust torque speed and position digital controller for electric drives, EMPS, Vol. 15, pp Bonanno C.J., Zhen L. and Xu L. (1995), A direct field oriented induction machine drive with robust flux estimator for position sensorless control, Cod. Rec. of IAS 95, pp Bose B. K. (1981), Adjustable Speed AC Drive Systems, IEEE Press. 7. Blaschke F. (1972). The principle of Field Orientation as applied to trans.vector Closed-Loop Control System for rotating Machines, Siemens Review, Vol.30, pp Bose B.K. (1976), Power electronics and variable frequency drives, IEEE Press, New York. 9. Bo Zhou XiaoFei Jing (2008) Application of Particle Swarm Optimization on DTC for Induction Motors Fourth International Conference on Natural Computation pp Cameron D.E., Lang J.H. and Umans S.D. (1989), The origin of acoustic noise in variable-reluctance motors, in IEEE-IAS Con$ Rec. 89, pp

2 Cameron D.E., Lang J.H. and. Umans S.D. (1992), The origin and reduction of acoustic noise in doubly salient variable Reluctance motors, IEEE Trans. Ind. Applicat., Vol. 28, pp Casadei D., Grandi G. and Serra G. (1993), Rotor flux oriented torque-control of induction machines based on stator flux vector control, Cod. Proc. of EPE 93, Vol. 5, pp Casadei D., Grandi G. and Serra G. and Tani A. (1994), Switching strategies in direct torque control of induction machines, Cod. Proc. ICEM94, pp Casadei D., Serra G. and Tani A. (1996), Stator Flux Vector Control for High Performance Induction Motor Drives using Space Vector Modulation, Electromotion, Vol.2. No.2, pp Casadei D., Serra G. and Tani A. (2000), Implementation of a Direct Control Algorithm for Induction Motors based on Discrete Space Vector Modulation, IEEE Trans. Ind. Application, Vol.25, No.2, pp Corda J. and Stephenson J.M. (1979), An analytical estimation of the minimum and maximum inductances of a double-salient motor, In: Proc. Int. Conf. Stepping Motors Systems, Leeds, pp Doncker R. and Novotny D.W. (1988), The universal field oriented controller, IIXE-IAS Annual Meeting Conference Record, pp Grzesiak L.M, Meganck V., Sobolewski J. and Ufnalski B. (2003) Genetic Algorithm for Parameters Optimization of ANN-based Speed Controller EUROCON 2007 The International Conference on Computer as a Tool Warsaw, September 9-12 pp Habetler T.G., Profumo F., Pastorclli M. and Tolbert L.M. (1992), Direct Torque Control of Induction Machines Using Space Vector Modulation, IEEE Transactions on Industry Applications, Vol.28, No.5, pp Hai-Jiao Guo (2006), Considerations of Direct Torque Control for Switched Reluctance Motors, IEEE ISIE, pp

3 Hassan-Halleh, Meisam-Rahmani and Bahram-Kimiaghalam(2008) Direct Torque Control of Induction Motors with Fuzzy Logic Controller International Conference on Control, Automation and Systems Oct , 2008 in COEX, Seoul, Korea pp Hava A., Blasko V. and Lip T.A. (1991), A Modified C-dump converter for variable reluctance machines, IEEE IAS, pp Hongwei Gao, Farzad Rajaei Salmasi and Mehrdad Ehsani (2004), Inductance Model-based Sensor Less Control of the Switched Reluctance Motor Drive at Low Speed, IEEE Trans. Power Electronics, Vol.19, No.6, pp Ilic -Spong M., Marino R., Peresada S. M., and Taylor D. G.(1987), Feedback linearizing control of switched reluctance motors, IEEE Trans.Automat. Contr., Vol. AC-32, pp Jeong B.H., Lee K.Y., Na J.D., Cho G.B. and Baek H.L. (2006), Direct Torque Control for the 4-phase Switched Reluctance Motor Drives, In Conf. Rec. IEEE-IAS Annual. Meeting 2006, pp Jinupun P. and Luk P.C.K. (1998), Direct Torque Control for Sensorless Switched Reluctance Motor Drives, in Proc. 7th Int. Conf. Power Electron. Variable Speed Drives, pp Joon Hyoung Ryu, Kwang Won Lee and Ja Sung Lee (2003), A Unified Flux and Torque Control Method for DTC-based Induction- Motor Drives, IEEE Transactions on Power Electronics, Vo18, No.3 pp Jun-Koo Kang and Seung-Ki Sul (1999), New Direct Torque Control of Induction Motor for Minimum Torque Ripple and Constant Switching Frequency, IEEE Transactions on Industry Applications, Vol. 35, No. 5, pp Krishnan R. (1996), A novel converter topology for switched reluctance motor drives, Conf. Rec., IEEE PESC, Baveno, Italy, pp Krishnan R. (2001), Electric Motor Drives, Prentice-Hall, Englewood Cliffs, NJ.

4 Krishnan R. and Materu P. (1990), Design of a single-switch-perphase converter for switched reluctance motor drives, IEEE Trans. on Industrial Electronics, Vol.37, No.6, pp Krishnan R. and Vijayraghavan P. (1998), State of the art: Acoustic noise in switched reluctance motor drives, in Proc. IECON 98, Aachen, Germany, pp Lawrenson P.J., Stephenson J.M., Blenkinsop P.T., Corda J. and Fulton N.N. (1980), Variable - speed switched reluctance motors, IEEE Proc. Electrical Power Appl. B, Vo l.127, No.4, pp Lechenadec J., Geoffroy M., Multon B. and Mouchoux J. (1994), Torque Ripple minimization in Switched Reluctance Motors by Optimisation of Current Wave-Forms and of Tooth Shape with Copper Losses and V.A Silicon, Constraints Proceeding of International Conference on Electrical Machines, ICEM'94 p.559 -&5I6P4, Lee B.S. (2000), Linear Switched Reluctance Machine Drives with Electromagnetic Levitation and Guidance Systems, Ph.D. thesis, The Bradley Department of Electrical and Computer Engineering, Virginia Tech., Blacksburg, VA. 36. Maes J. and Melkebeek J. (1998), Discrete Time Direct Torque Control of Induction Motors Using Back-EMF Measurement, The IEEE Industry Applications Conference, rd IAS Annual Meeting, pp Manabu Mitani, Hiroki Goto, Hai-Jiao Guot and Osamu Ichinokura (2006), Position Sensorless Direct Torque Control of SR Motors, EPE-PEMC 2006, Portoro, Slovenia, pp Matsui Akao N. and Wakino T. (1991), High-precision torque control of reluctance motors, IEEE Trans. Ind. Application., Vol. 27, pp Mei C.G., Panda S.K., Xu J.X. and Lim K.W. (1999), Direct Torque Control of Induction Motor-Variable Switching Sectors, IEEE International Conference on Power Electronics and Drive Systems, PEDS 99, Hongkong.

5 Michaelides A.M. and Pollock C. (1993), Modeling of a New Winding Arrangement to Improve Performance in the Switched Reluctance Motor', In: Proc.6th Int. Conf. Elect. Mach. Drives, pp Miller T.J.E. (1993), Switched Reluctance Motors and their Control, Magna Physics Publishing/Clarendon Press, Oxford. 42. Miller T.J.E. and McGilp M. (1990), Nonlinear theory of the switched reluctance motor for rapid computer-aided design, IEEE Proc. B, Vol.137, No.6, pp Nagel N.J. and Lorenz R.D. (1999), Complex rotating vector method for smooth torque control of a saturated switched reluctance motor, In: Proc. 34th Annual. Meeting IEEE Ind. Application., Vol. 4, pp Nasar S.A. (1969), D.C.-switched reluctance motor, In Proceedings of the Institution of Electrical Engineers (London), Vol. 116, No. 6, pp Novotny D.W. and Lorenz R.D. (1986), Introduction to field orientation and high performance ac drives, IEEE-IAS Tutorial Notes, in Proc. IEEE-IAS Ann. Mtg., pp Ohtani T., Takada N. and Tanaka K. (1992), Vector control of induction motor without shaft encoder, IEEE Trans. on L4, Vol. 28, No.1, pp Pengcheng Zhu, Yong Kang and Jim Chen (2003), Improve Direct Torque Control Performance of Induction Motor with Duty Ratio Modulation, IEEE Transactions on industry applications, Vol. 38, No. 3, pp Peter Vas (1998), Sensorless vector and direct torque control, Oxford University Press. 49. Pollock C. and Williams B.W. (1988), A unipolar converter for a switched reluctance motor, IEEE IAS, pp Rim G.H. and Kim W.H. (1994), A novel converter topology for switched reluctance motor drives improving efficiency and simplifying control strategy, IEEE PESC, pp

6 Robert B., Inderka Rik W.A. and De Doncker A. (2003), DITC-Direct Instantaneous Torque Control of Switched Reluctance Drives', IEEE Transactions on Industry Applications, Vol.39, No.4, pp Sahoo S.K., Panda S.K. and Xu J.X. (2005), Direct Torque Controller for Switched Reluctance Motor Drive using Sliding Mode Control' IEEE Conference Proceedings PEDS 2005, pp Sahoo S.K., Panda S.K. and Xu J.X. (2004), Iterative Learning Control based Direct Instantaneous Torque Control of Switched Reluctance Motors, 25 th Annual IEEE Power Electronics specialists conference, pp Sood P.K. (1992), Power Converter for a Switched Reluctance Motor, U.S. Patent No.5, pp Stankovic M., Tadmor G., Coric Z.J. and Agirman I. (1999), On torque ripple reduction in current-fed switched reluctance motors, IEEE Trans. Ind. Electron., Vol. 46, pp Takahashi and Noguchi T. (1997), Take a Look Back Upon the Past Decade of Direct Torque Control', in Proc. IECON 97, 23rd Int. Conf. Ind. Electron. Contr. Instrum., Vol.2, pp Takahashi and Ohmori Y. (1989), High Performance Direct Torque Control of an Induction Motor', IEEE Trans. Industrial. Application, Vol.25, No.2, pp Taylor D.G. (1991), Adaptive control design for a class of doublysalient motors, in Proc. 30th IEEE Conf. Dec. Control., Vol. 3, pp Tiitinen P., Pohkalainen P. and Lalu J. (1995), The next generation motor control method : Direct Torque Control (DTC), EPE Journal, Vo1.5, No.1, March 1995, pp Vedagarbha P., Dawson D.M. and Rhodes W. (1997), An adaptive controller for a general class of switched reluctance motor models, in Proc. 13 th World Congr., Vol. F, pp Vijayraghavan P. and Krishnan R. (1999), Noise in Electric Machines: A Review, IEEE transactions on industry applications, Vol. 35, No. 5, pp

7 Vukosavic S. and Stefanovic V.R. (1990), SRM inverter topologies: a comparative evaluation, IEEE IAS, pp Wallace R.S. and Taylor D.G. (1992), A Balanced Commutator for Switched Reluctance Motors to Reduce Toque Ripple, IEEE Transactions on Power Electronics. Vo1.7, No.4, pp Wu C.Y. and Pollock C. (1993), Analysis and reduction of vibration and acoustic noise in the switched reluctance drive, in Conf. Rec. IEEE-IAS Annu. Meeting, pp Xiying Ding, Qiang Liu, Xiaona Ma, Xiaoran He and Qing Hu (2007), The Fuzzy Direct Torque Control of Induction Motor Based on Space Vector Modulation, Third International Conference on Natural Computation (ICNC 2007).

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