DocumentCode :
1520119
Title :
Active Correction of Dynamic Mass Imbalance for a Precise Rotor
Author :
Ihn, Y.S. ; Lee, J.K. ; Oh, D.H. ; Lee, H.S. ; Koo, J.C.
Author_Institution :
Sch. of Mech. Eng., Sungkyunkwan Univ., Suwon, South Korea
Volume :
45
Issue :
11
fYear :
2009
Firstpage :
5088
Lastpage :
5093
Abstract :
An adaptive mass imbalance correction method for a precision rotor that is formulated in frequency domain is introduced. Various imbalance correction methods are developed and successfully implemented since mass imbalance of a precise rotor has been one of the critical volume production issues for decades, especially in the data storage industry. Meanwhile the volume manufacturing tolerance of the mass imbalance has been ever tightened as the data storage density has been increasing. Recognizing the limitation of the present imbalance correction methods and the practicality of fine-tuned rotor balance for volume production, this paper delivers development of an adaptive dynamic rotor balance scheme, which is of great worth. An application of frequency-based control method popularly used for repeatable runout compensation for the mass imbalance enables reliable and accurate balancing of precision rotors. The use of least mean squares algorithm for the formulation of the control law has improved the robustness of the imbalance correction and improved manufacturing yields.
Keywords :
adaptive control; disc drives; frequency control; hard discs; least mean squares methods; mass production; mechanical stability; mechanical variables control; precision engineering; rotors; vibration control; adaptive mass imbalance correction method; data storage density; data storage industry; frequency domain; frequency-based control method; least mean squares algorithm; precision rotor; volume manufacturing; volume production; Assembly; Counting circuits; Hard disks; Manufacturing; Mechanical engineering; Memory; Robust control; Rotors; Spatial resolution; Vehicle dynamics; Least mean square; mass imbalance; precision rotor; runout;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2009.2029622
Filename :
5297529
Link To Document :
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