Title :
Repeatable runout disturbance compensation with a new data collection method for hard disk drive
Author :
Jia, Qing-Wei ; Wang, Zhong-Feng ; Wang, Fu-Cai
Author_Institution :
Sci. Park Design Center, Seagate Technol. Int., Singapore
Abstract :
In this paper, a new method to determine repeatable runout (RRO) disturbance data is proposed. The obtained RRO disturbance data is further used to compensate for the RRO disturbance. The error transfer function (or sensitivity function) can be obtained without any additional instrument, and moreover the estimated RRO disturbance obtained from the proposed method will not be affected by the variation of the actuator model. Furthermore, the proposed method is much easier to be implemented than the fast Fourier transform and inverse fast Fourier transform (FFT/IFFT) method as much less computation is needed. Experimental results show that the servo tracking performance can be significantly improved by using the estimated disturbance to compensate the actual RRO disturbances. Comparative study between the proposed RRO compensation method and the iterative learning control (ILC)-based compensation method has also been performed in this paper.
Keywords :
disc drives; electric actuators; fast Fourier transforms; hard discs; servomotors; RRO compensation method; actuator model; data collection method; error transfer function; hard disk drive; inverse fast Fourier transform method; iterative learning control; nonrepeatable runout disturbance; repeatable runout disturbance; sensitivity function; servo tracking; Automatic frequency control; Fast Fourier transforms; Hard disks; Iterative methods; Magnetic heads; Position measurement; Rail to rail outputs; Servomechanisms; Shape; Transfer functions; Hard disk drive (HDD); nonrepeatable runout (NRRO) disturbance; position error signal (PES); repeatable runout (RRO) disturbance;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2004.840323