Title
New Repetitive Control With Improved Steady-State Performance and Accelerated Transient
Abstract
In repetitive control (RC), the enhanced servo performance at the fundamental frequency and its higher order harmonics is usually followed by undesired error amplifications at other frequencies. In this paper, we discuss a new structural configuration of the internal model in RC, wherein designers have more flexibility in the repetitive loop-shaping design, and the amplification of nonrepetitive errors can be largely reduced. Compared to conventional RC, the proposed scheme is especially advantageous when the repetitive task is subject to large amounts of nonperiodic disturbances. An additional benefit is that the transient response of this plug-in RC can be easily controlled, leading to an accelerated transient with reduced overshoots. Verification of the algorithm is provided by simulation of a benchmark regulation problem in hard disk drives, and by tracking-control experiments on a laboratory testbed of an industrial wafer scanner.
Year
DOI
Venue
2014
10.1109/TCST.2013.2253102
IEEE Trans. Contr. Sys. Techn.
Keywords
Field
DocType
control system synthesis,regulation,servomechanisms,transient response
Transient response,Fundamental frequency,Servo,Control theory,Repetitive control,Testbed,Control engineering,Scanner,Steady state,Mathematics,Internal model
Journal
Volume
Issue
ISSN
22
2
1063-6536
Citations 
PageRank 
References 
5
0.58
12
Authors
2
Name
Order
Citations
PageRank
Chen Xu15715.14
M. Tomizuka21464294.37