二级控制系统线性控制器设计
Linear Tracking Control for Dual-Stage Actuator System
DOI: 10.12677/MET.2013.22008, PDF, HTML, 下载: 2,781  浏览: 8,182 
作者: 陈积金*:杭州电子科技大学自动化学院,杭州
关键词: 二级控制近似时间最优控制调节时间Dual-Stage Actuator; PTOS; Time
摘要: 研究二级控制系统中线性控制器的设计方法,以达到快速准确追踪阶跃响应信号的目的。为进一步减少稳定时间,我们在主控制器上设计一定溢出。主控制器采取近似时间最优控制律来设计制动器,次级控制器则用线性控制器直接得到。在实验平台d-SPACEDS1103上对所设计的2级控制系统进行验证。实验数据验证了本文提出的二级控制器设计方法的有效性和可行性。
Abstract: This paper presents a linear control method for dual-stage actuator (DSA) systems to track a step command input fast and accurately. The controller was designed to control two actuators to coordinately work according to the estimated value from the state estimator, and the dual-stage control was realized. An experiment on DSPACE-DS1103 illustrates that the approach to design dual-stage controller is effective and feasible.
文章引用:陈积金. 二级控制系统线性控制器设计[J]. 机械工程与技术, 2013, 2(2): 46-50. http://dx.doi.org/10.12677/MET.2013.22008

参考文献

[1] S. Makinouchi, Y. Hayashi and S. Kamiya. New stage system for step-and-repeat scanning stepper. Transaction of The Japan Society for Precision Engineering, 1995, 61(12): 1676-1680.
[2] M. Tomizuka, J.-S. Hu, T.-C. Chin and T. Kamano. Synchronization of two motion control axes under adaptive feed-forward control. Journal of Dynamic Systems, Measurement and Control, 1992, 114(2): 196-203.
[3] T. Kamano, T. Suzuki, N. Iuchi and M. Tomizuka. Adaptive feed-forward controller for synchronization of two axes positioning system. Transac-tions of the Society of Instrument and Control Engineers, 1993, 29(7): 785-791.
[4] L.-F. Yang, W.-H. Chang. Synchronization of twin-gyro precession under cross-coupled adaptive feed-forward control. Jour- nal of Guidance, Control, and Dynamics, 1996, 19(3): 534-539.
[5] S. Schroeck, W. Messner and R. McNab. On compensator design for linear time-invariant dual-input single-output systems. IEEE/ASME Transactions on Mechatronics, 2001, 6(1): 50-57.
[6] H. Numasato, M. Tomizuka. Settling control and performance of a dual-actuator system for hard disk drives. IEEE/ASME Transactions on Mechatron-ics, 2003, 8(4): 431-438.
[7] Z. Lin, M. Pachter and S. Banda. To-ward improvement of tracking performance—Nonlinear feedback for linear systems. International Journal of Control, 1998, 70(1): 1-11.
[8] B. M. Chen, T. H. Lee, K. Peng, et a1. Composite nonlinear feedback control for linear systems with input saturation: Theory and an application. IEEE Transactions on Automatic Control, 2003, 48(3): 427-439.
[9] D. Emmandez, S. S. Park, R. Horownz, et al. Dual stage track- following servo design for hard disk drives. Proceedings of the American Control Conference. San Diego: IEEE, 1999: 4116- 4121.
[10] M. Karaman, W. C. Message. Robust dual stage HDD track fol- low control systems design for hand-off shaping. Magnetic Re-cording Conference. Coral Gables: IEEE, 2002: BA5-01-02.
[11] L. Guo, J. K. Chang. Track-following and seek settle control schemes for high density disk drive with dual-stage actuator. Proceedings of the IEEE ASME International Conference. Como: IEEE, 2001: 1136-1141.
[12] M. Kobayashi, R. Horowitz. Track seek control for hard disk dual-stage servo systems. IEEE Transactions on Magnetics, 2001, 37(2): 949-954.
[13] S. Lee, Y. Kim. Minimum destructive interference design of dual-stage control systems for hard disk drives. IEEE Transactions on Control Systems Technology, 2004, 12(4): 517-531.
[14] B. Hredzak, G. Herrmann and G. Guo. A proxi-mate-time-optimal control design and its application to a hard disk drive dual-stage actuator system. IEEE Transactions on Magnetics, 2006, 42(6): 1708-1715.
[15] M. Workman. Adaptive proximate time-optimal servo mechanisms. Ph.D. Thesis, Stanford University, 1987.
[16] E. Sontag. Remarks on stabilization and input-to-state stability. IEEE Conference on Decision and Control, 1989: 1376-1378.