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Hard Disk Drive Servo Systems
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036aXA-GB
037beng
077a256532206 Buchausg. u.d.T.: ‡Hard disk drive servo systems
087q978-1-84628-304-8
100bChen, Ben M.
104bPeng, Kemao
108bLee, Tong H.
112bVenkataramanan, Venkatakrishnan
331 Hard Disk Drive Servo Systems
403 2nd Edition
410 London
412 Springer London
425 2006
425a2006
433 Online-Ressource (XVIII, 310 p. 124 illus, digital)
451bAdvances in Industrial Control
527 Buchausg. u.d.T.: ‡Hard disk drive servo systems
540aISBN 978-1-84628-305-5
700 |TJFM
700 |TEC004000
700b|629.8323
700b|629.8
700g1271510456 ST 175
750 and Background Material -- System Modeling and Identification -- Linear Systems and Control -- Classical Nonlinear Control -- Composite Nonlinear Feedback Control -- HDD Servo Systems Design -- Track Following of a Single-stage Actuator -- Track Seeking of a Single-stage Actuator -- Dual-stage Actuated Servo Systems -- Modeling and Design of a Microdrive System -- Design of a Piezoelectric Actuator System -- A Benchmark Problem.
753 The second edition of this monograph provides a systematic treatment of the design of modern hard disk drive servo systems updated with the latest research results to reflect recent improvements in spindle speed and bit density and other changes in this fast-moving field. In particular, it focuses on the applications of some newly developed results in control theory, i.e., robust and perfect tracking control and composite non-linear feedback control which are suitable for track following and seeking respectively. Emphasis is placed on hard disk drive servo systems with single- or dual-stage actuation using a voice-coil-motor actuator enhanced in the latter case by the addition of a micro-actuator providing faster responses and therefore higher bandwidth in track following. Other issues such as modeling and compensation of nonlinearities and friction in microdrives, disturbance rejection and resonance compensation are also addressed. The techniques and applications involved include: • time- and frequency domain methods for system identification; • physical effect approaches for parameter identification; • linear systems tools; • linear control techniques (PID, H2, H-infinity, and other robust control methods); • classical nonlinear control techniques (time-optimal, proximate time-optimal, and mode switching control); • composite nonlinear feedback (CNF) control; • complete single- and dual-stage hard disk drive servo systems; • time- and frequency domain properties of hard disk drive servo systems; • design of piezoelectric actuator systems; • modeling and compensation of nonlinearities and friction in microdrives. Hard Disk Drive Servo Systems will be of great value to practicing engineers in the hard disk and CD-ROM drive industries and to researchers in areas related to servo systems. The Linear Systems and CNF MATLAB® toolkits used to develop many of the results in this book can be downloaded from Professor Chen’s website. Advances in Industrial Control aims to report and encourage the transfer of technology in control engineering. The rapid development of control technology has an impact on all areas of the control discipline. The series offers an opportunity for researchers to present an extended exposition of new work in all aspects of industrial control.
902s 210120525 Festplattenlaufwerk
902s 214324699 Mikroaktor
902s 210002271 Servoeinrichtung
902s 208996389 Kontrolltheorie
902s 209090057 Rückkopplung
902s 209543213 Optimale Kontrolle
012 264342569
081 Hard Disk Drive Servo Systems
100 Springer E-Book
125aElektronischer Volltext - Campuslizenz
655e$uhttp://dx.doi.org/10.1007/1-84628-305-1
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