Title :
Track following control design for ODDs by employing repetitive two-degree-of-freedom control scheme
Author :
Dong, Fengdan ; Wang, Youyi ; Zhou, Jianying
Abstract :
Radial track following of an optical disk drive (ODD) servomechanism is severely exposed to periodic disturbances induced by eccentric rotation of the disc. Such disturbances cause the tracking errors of a periodic nature and can be effectively rejected by employing a repetitive controller. In this paper, we propose a repetitive 2DOF control scheme for an ODD track-following servo system with uncertain plant parameters. The proposed repetitive controller is designed on the basis of the frequency domain analysis of the linear interval system and installed as a plug-in module in an existing track following servo system whose feedback compensator is designed independently of the repetitive controller. Simulative and experimental results showed that the proposed control scheme enables a significant improvement of the tracking accuracy of the radial servomechanism.
Keywords :
compensation; control system synthesis; disc drives; frequency-domain analysis; optical disc storage; position control; servomechanisms; uncertain systems; feedback compensator; frequency domain analysis; linear interval system; optical disk drive servomechanism; periodic disturbances; plant uncertainty; repetitive controller; repetitive two-degree-of-freedom control scheme; track following control; Control design; Control systems; Disk drives; Disk recording; Optical attenuators; Optical control; Optical feedback; Optical recording; Servomechanisms; Stability;
Journal_Title :
Consumer Electronics, IEEE Transactions on
DOI :
10.1109/TCE.2003.1261215