DocumentCode
2192025
Title
Discrete-time disturbance observer design for systems with time delay
Author
Kempf, Carl J. ; Kobayashi, Seiich
Author_Institution
Precision Machinery & Parts Technol. Center, NSK Ltd., Gunma, Japan
Volume
1
fYear
1996
fDate
18-21 Mar 1996
Firstpage
332
Abstract
In many engineering systems, time delay is present or can be used to approximate phase loss at high frequencies. In such situations, existing disturbance observer design techniques encounter difficulties due to bandwidth limitations or relative degree restrictions on disturbance observer filtering. These problems can be avoided by a straightforward inclusion of time delay in the nominal plant model. As a result, the disturbance observer sensitivity function is degraded, but this is offset by the fact that higher bandwidth low pass filtering can be used. Importantly, input-output characteristics of the disturbance observer loop better approximate the nominal plant model, thus improving noise rejection and simplifying the subsequent design of outer loop compensation and feedforward filtering. The technique is applied one axis of a high speed X-Y table. Simulation and experimental results demonstrate the effectiveness of the technique
Keywords
compensation; delays; discrete time systems; feedforward; filtering theory; observers; bandwidth low pass filtering; discrete-time disturbance observer design; engineering systems; feedforward filtering; input-output characteristics; noise rejection; nominal plant model; outer loop compensation; phase loss; sensitivity function; time delay; Band pass filters; Bandwidth; Degradation; Delay effects; Filtering; Frequency response; Low pass filters; Machinery; Motion control; Systems engineering and theory;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Motion Control, 1996. AMC '96-MIE. Proceedings., 1996 4th International Workshop on
Conference_Location
Mie
Print_ISBN
0-7803-3219-9
Type
conf
DOI
10.1109/AMC.1996.509428
Filename
509428
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