DocumentCode
1461789
Title
On compensator design for linear time-invariant dual-input single-output systems
Author
Schroeck, Steven J. ; Messner, William C. ; McNab, Robert J.
Author_Institution
Dept. of Mech. Eng., Carnegie Mellon Univ., Pittsburgh, PA, USA
Volume
6
Issue
1
fYear
2001
fDate
3/1/2001 12:00:00 AM
Firstpage
50
Lastpage
57
Abstract
This paper presents a new method for the design of compensators for linear time-invariant dual-input/single-output (DISO) systems in continuous time or discrete time. The new method reduces the problem to two single-input/single-output (SISO) design problems, which are well suited to frequency-response design techniques. The first part of the method is the design of a stabilizing compensator for an auxiliary feedback system. The auxiliary compensator parameterizes the two output blocks of the single-input/dual-output compensator such that the zeros of the parallel system formed by cascade of the compensator with the plant are stable. The auxiliary compensator also determines the relative contribution to the output of the two parallel subsystems of the DISO system. The second SISO compensator design is used to ensure that the feedback system is stable and that performance and robustness specifications are achieved. This paper includes a discrete-time-design example for a dual-stage actuator system for a disk drive including implementation results. Straightforward extensions for multi-input/single-output systems are discussed
Keywords
cascade systems; compensation; control system synthesis; feedback; frequency response; linear systems; multivariable control systems; poles and zeros; robust control; LTI DISO systems; MISO systems; SIDO compensator; auxiliary feedback system; compensator design; compensator-plant cascade; continuous-time systems; discrete-time systems; disk drive; dual-stage actuator system; feedback system; frequency-response design techniques; linear time-invariant dual-input single-output systems; parallel system; stabilizing compensator; zeros; Actuators; Control systems; Data storage systems; Design methodology; Disk drives; Hard disks; MIMO; Mechanical engineering; Optical feedback; Servomechanisms;
fLanguage
English
Journal_Title
Mechatronics, IEEE/ASME Transactions on
Publisher
ieee
ISSN
1083-4435
Type
jour
DOI
10.1109/3516.914391
Filename
914391
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