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Sliding Mode Based Fuzzy Control for Positioning of Optical Pickup Head

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Lee, D. J., Park, S. J., Woo, K. S., Park, N. C., and Park, Y. P. (2005). Design and analysis of two-wire focusing actuator for small-sized ODD with linear VCM type’s actuator. Microsyst. Technol., 11, 470-477.10.1007/s00542-005-0595-4 Search in Google Scholar

Edwards, C and Tan, C. P. (2006). Sensor fault tolerant control using sliding mode observers. Control Engineering Practice, 14, 897-908.10.1016/j.conengprac.2005.05.002 Search in Google Scholar

Allen, M., Bernilli-Zazzera, F., and Scattolini, R. (2000). Sliding control of a large flexible space structure. Control Engineering Practice, 8, 861-871.10.1016/S0967-0661(00)00004-6 Search in Google Scholar

Zadeh, L. A. (1965). Fuzzy sets. Information and Control, 8(3), 338-353.10.1016/S0019-9958(65)90241-X Search in Google Scholar

Zulfatman and Rahmat, M. F. (2009). Application of self-tuning fuzzy PID controller on industrial hydraulic actuator using system identification approach. International Journal on Smart Sensing and Intelligent Systems, 2(2), 246-261.10.21307/ijssis-2017-349 Search in Google Scholar

Wang, T. M., Liao, I. J., Liao, J. C., Suen, T. W., and Lee, W. T. (2009). An intelligent fuzzy controller for air-condition with Zigbee sensors. International Journal on Smart Sensing and Intelligent Systems, 2(4), 636-652.10.21307/ijssis-2017-372 Search in Google Scholar

Hong, D., Hwang, I., Yoon, P., and Huh, K. (2008). Development of a vehicle stability control system using brake-by-wire actuators. J. Dynamic Systems, Measurement, and Control, 130, 011008-1-011008-9.10.1115/1.2807190 Search in Google Scholar

Yagiz, N., Hacioglu, Y., and Taskin, Y. (2008). Fuzzy sliding-mode control of active suspensions. IEEE Trans. Industrial Electronics, 55(11), 3883-3890.10.1109/TIE.2008.924912 Search in Google Scholar

Tsai, M. Y., Liu, T. S., and Schlesinger, T. E. (2009). Laser diode feedback signal for position sensing using self-mixing interference. Jpn. J. Appl. Phys., 48, 03A007-1-03A007-3.10.1143/JJAP.48.03A007 Search in Google Scholar

Giuliani, G., Norgia, M., Donati, S., and Bosch, T. (2002). Laser diode self-mixing technique for sensing applications. J. Opt. A: Pure Appl. Opt., 4, S283-S294. Search in Google Scholar

Neduncheliyan, S., Umapathy, M., and Ezhilarasi, D. (2009). Simultaneous periodic output feedback control for piezoelectric actuated structures using interval methods. International Journal on Smart Sensing and Intelligent Systems, 2(3), 417-431.10.21307/ijssis-2017-358 Search in Google Scholar

Utkin, V. I. (1993). Sliding mode control design principles and applications to electric drives. IEEE Trans. Industrial Electronics, 40(1), 23-36.10.1109/41.184818 Search in Google Scholar

Baily, E. and Arapostathis, A. (1987). Simple sliding mode control scheme applied to robot manipulator. Int. J. Control, 45, 1197-1209.10.1080/00207178708933801 Search in Google Scholar

Chang, J. L. and Chen, Y. P. (2000). Sliding vector design based on the pole-assignment method. Asian J. Control, 2(1), 10-15.10.1111/j.1934-6093.2000.tb00140.x Search in Google Scholar

Sinswat, V. and Fallside, F. (1977). Eigenvalue/eigenvector assignment by state feedback. Int. J. Control, 23, 183-196.10.1080/00207177608922151 Search in Google Scholar

Slotine, J. J. E. and Sastry, S. S. (1983). Tracking control of nonlinear systems using sliding surfaces with application to robot manipulators. Int. J. Control, 38, 465-492.10.1080/00207178308933088Search in Google Scholar

eISSN:
1178-5608
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Inglese
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Volume Open
Argomenti della rivista:
Engineering, Introductions and Overviews, other