Deshpande U S, Cathey J J, Richter E. High-force density linear switched reluctance machine[J]. IEEE Trans. Ind. Applicat., 1995, 31(3): 345-352.
[2]
Lee B S, Bae H K, Vijayraghavan P, et al. Design of a linear switched reluctance machines[J]. IEEE Trans. Ind. Applicat., 2000, 36(11): 1571-1580.
[3]
Gan W C, Cheung N C, Qiu L. Position control of linear switched reluctance motors for high precision applications[J]. IEEE Trans. Ind. Applicat., 2003, 39(9): 1350-1362.
[4]
Gan W C, Cheung N C, Qiu L. Short distance position control for linear switched reluctance motors: plug-in robust compensator approach[C]. Industry Applica- tions Conference, 2001: 2329-2336.
[5]
Khorrami F, Krishnamurthy P, Melkote H. Modeling and Adaptive nonlinear control of electric motors[M]. Germany: Springer, 2003.
[6]
Borka J, Lupan K, Szamel L. Control aspects of switched reluctance motor drives[C]. Industrial Electronics Conference Proceedings, 1993, 6: 296- 300.
[7]
Goldenberg A A, Laniado I, Kuzan P, et al. Control of switched reluctance motor torque for force control applications[J]. IEEE Trans. Ind. Electron., 1994, 41(8): 461-466.
[8]
Ilic’Spong M, Marino R, Peresada S M, et al. Linearizing control of switched reluctance motors[J]. IEEE Trans. Automat. Contr, 1987, AC-32: 371-379.
[9]
Xia C, Chen Z, Xue M. Adaptive PWM speed control for switched reluctance motors based on RBF neural network[C]. Proceedings of the 6th World Congress on Intelligent Control and Automation, June 21-23, Dalian, China, 2006: 21-23.
[10]
Espinosa Pérez, Maya Ortiz G P, Velasco M Vill, et al. Passivity-based control of switched reluctance motors with nonlinear magnetic circuits[J]. IEEE Trans. Contr. System Tech, 2004, 12(3): 439-448.
[11]
Gan W C, Cheung N C, Qiu L. Design of a linear switched reluctance motor for high precision applications[C]. Electric Machines and Drives Conference, 2001: 701-704.
[12]
Bae H K, Lee B S, Vijayraghavan P, et al. A linear switched reluctance motor: converter and control[J]. IEEE Trans. Ind. Applicat., 2000, 36(9): 1351-1359.
[13]
Gan W C, Chan K K, Widdowson G P , et al. Application of linear switched reluctance motors to precision position control[J]. Power Electronics Systems and Applications, 2004 Proceedings, 11: 254-259.
[14]
Yang J M, Jin X, Wu J, et al. Passivity-based control incorporating trajectory planning for a variable- reluctance finger gripper[J]. Proc. Instn Mech. Engrs Part I: J. Systems and Control Engineering, 218, 99- 109.
[15]
Miller T J E. Switched reluctance motor and their control[M]. London, :Oxford Univ. Press, 1993.
[16]
Ma B Y, Liu T H, Feng W S. Modeling and torque pulsation reduction for a switched reluctance motor drive system[C]. Proceedings of the 1996 IEEE IECON 22nd International Conference on Industrial Electronics, Control, and Instrumentation, 1996, 1: 72-77.
[17]
Panda S K, Dash P K. Application of nonlinear control to switched reluctance motors: a feedback linearization approach[J]. IEE Pro-Electr. Power Appl, 1996, 3: 371-379.
[18]
Milman R. Bortoff S A. Observer-based adaptive control of a variable reluctance motor: experimental results[J]. IEEE Trans. Contr. System Tech., 1999, 7(7): 613-621.
[19]
Sahoo S K, Panda S K, Xu J. Indirect torque control of switched reluctance motors using iterative learning control[J]. IEEE Trans. on Power Electronics, 2005, 20(1): 200-208.
[20]
Pan J F, Cheung N C, Yang J M. Auto-disturbance rejection controller for novel planar switched reluctance motor[J]. IEE Pro-Electr. Power Appl, 2006, 153(2): 307-316.
[21]
Ortega, Romeo. Passivity properties for stabilization of cascaded nonlinear systems[J]. Automatica, 1991, 27(2): 423-424.