Chao et al., 2008 - Google Patents
Sensorless tilt compensation for a three-axis optical pickup using a sliding-mode controller equipped with a sliding-mode observerChao et al., 2008
View PDF- Document ID
- 4005516096524244115
- Author
- Chao P
- Shen C
- Publication year
- Publication venue
- IEEE transactions on control systems technology
External Links
Snippet
A sliding-mode controller equipped with a sliding-mode observer is synthesized and applied to a novel three-axis four-wire optical pickup for the purpose of sensorless tilt compensation. The three-axis pickup owns the capability to move the lens holder in three directions of …
- 230000003287 optical 0 title abstract description 44
Classifications
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B5/00—Recording by magnetisation or demagnetisation of a record carrier; Reproducing by magnetic means; Record carriers therefor
- G11B5/48—Disposition or mounting of heads or head supports relative to record carriers ; arrangements of heads, e.g. for scanning the record carrier to increase the relative speed
- G11B5/54—Disposition or mounting of heads or head supports relative to record carriers ; arrangements of heads, e.g. for scanning the record carrier to increase the relative speed with provision for moving the head into or out of its operative position or across tracks
- G11B5/55—Track change, selection or acquisition by displacement of the head
- G11B5/5521—Track change, selection or acquisition by displacement of the head across disk tracks
- G11B5/5552—Track change, selection or acquisition by displacement of the head across disk tracks using fine positioning means for track acquisition separate from the coarse (e.g. track changing) positioning means
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B5/00—Recording by magnetisation or demagnetisation of a record carrier; Reproducing by magnetic means; Record carriers therefor
- G11B5/48—Disposition or mounting of heads or head supports relative to record carriers ; arrangements of heads, e.g. for scanning the record carrier to increase the relative speed
- G11B5/58—Disposition or mounting of heads or head supports relative to record carriers ; arrangements of heads, e.g. for scanning the record carrier to increase the relative speed with provision for moving the head for the purpose of maintaining alignment of the head relative to the record carrier during transducing operation, e.g. to compensate for surface irregularities of the latter or for track following
- G11B5/60—Fluid-dynamic spacing of heads form record-carriers
- G11B5/6005—Specially adapted for spacing from a rotating disc using a fluid cushion
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Horowitz et al. | Dual-stage servo systems and vibration compensation in computer hard disk drives | |
Kim et al. | Design and precision construction of novel magnetic-levitation-based multi-axis nanoscale positioning systems | |
Verma et al. | Multi-axis maglev nanopositioner for precision manufacturing and manipulation applications | |
CN101763038B (en) | Method for controlling structural modal vibration of dual-frame magnetic levitation control moment gyroscope | |
Pantazi et al. | Control of MEMS-based scanning-probe data-storage devices | |
Maamari et al. | Centrally fed orifice based active aerostatic bearing with quasi-infinite static stiffness and high servo compliance | |
Kuo et al. | Modeling and control of a six-axis precision motion control stage | |
Zhong et al. | Design and precision tracking control of a high-bandwidth fast steering mirror for laser beam machining | |
Chao et al. | Sensorless tilt compensation for a three-axis optical pickup using a sliding-mode controller equipped with a sliding-mode observer | |
Csencsics et al. | Bandwidth extension of hybrid-reluctance-force-based tip/tilt system by reduction of eddy currents | |
Huang et al. | Design and analysis of a high bandwidth disk drive servo system using an instrumented suspension | |
JP5445887B2 (en) | Magnetic bearing device | |
US8737183B1 (en) | Topographic feedforward system | |
Chen et al. | Design and implementation of a new six-DOF Maglev positioner with a fluid bearing | |
JP2006153129A (en) | Active vibration-free method and its device | |
Gu et al. | Nanoscale motion control with a compact minimum-actuator magnetic levitator | |
Xu et al. | Prototype of 6-DOF magnetically levitated stage based on single axis Lorentz force actuator | |
Thum et al. | A unified control scheme for track seeking and following of a hard disk drive servo system | |
Boettcher et al. | Modeling and control of a dual stage actuator hard disk drive | |
Park et al. | Magnetically suspended VSCMGs for simultaneous attitude control and power transfer IPAC service | |
JP2004164029A (en) | Elastic vibration control device | |
Dong et al. | Design of dual-stage actuation system for high precision optical manufacturing | |
JP2002542554A (en) | Active magnetic bearing device for improved servo control | |
Chao et al. | Design and implementation of a sliding-mode controller and a high-gain observer for output tracking of a three-axis pickup | |
US8638649B1 (en) | Topographic feedforward system |