DocumentCode
1083333
Title
Robust controllers enhanced with design and implementation processes
Author
Oliveira, Vilma A. ; Tognetti, Eduardo S. ; Siqueira, Daniel
Author_Institution
Dept. de Engenharia Eletrica, Univ. de Sao Paulo, Sao Carlos
Volume
49
Issue
3
fYear
2006
Firstpage
370
Lastpage
382
Abstract
In this paper, instructional material on the design of robust controllers that applies to introductory graduate or advanced undergraduate courses on control is provided. The main objective is the presentation of key concepts and interpretations that help students learn robust control design. The use of recently developed techniques in robust control such as Hinfin, mu analysis, and synthesis is explored. Emphasis is given to the modeling of the robust control problem with the system requirements described in a unified approach using weighting functions and linear fractional transformations (LFTs). Also, the results of a conventional lead-lag are included to reinforce the concept of robustness. The students should understand the basics of robust control using the MATLAB/Simulink platform and a hardware-in-the-loop experiment with a magnetic levitation system, which is considered a good plant for analysis and control design since it is a nonlinear unstable plant with practical use in high-speed transportation and magnetic bearings. The hardware-in-the-loop experiments are suitable for assessment during the final two semesters of engineering courses and are useful to further develop the students´ skills in control engineering. The control algorithms are evaluated in the LabVIEW environment, which introduces the students to industrial platforms
Keywords
Hinfin control; control engineering education; control system analysis; control system synthesis; educational courses; robust control; Hinfin mu analysis; LabVIEW; MATLAB; Simulink; advanced undergraduate courses; control engineering; hardware-in-the-loop experiment; high-speed transportation; instructional material; introductory graduate courses; linear fractional transformations; magnetic bearings; magnetic levitation system; robust control design; robust controllers; weighting function; Control design; Control system analysis; Control system synthesis; MATLAB; Magnetic analysis; Magnetic levitation; Mathematical model; Process design; Robust control; Robustness; Control design; control education; robust control; stability and performance robustness;
fLanguage
English
Journal_Title
Education, IEEE Transactions on
Publisher
ieee
ISSN
0018-9359
Type
jour
DOI
10.1109/TE.2006.879263
Filename
1668281
Link To Document