DocumentCode
2046977
Title
Robust co-evolutionary design of SISO Smith predictor PID controllers
Author
Oliveira, P.B.D.M. ; Jones, A.H.
Author_Institution
Saccao de Engenharias, Univ. de Tras-os-Montes e Alto Douro, Portugal
fYear
1997
fDate
2-4 Sep 1997
Firstpage
504
Lastpage
509
Abstract
Genetic algorithms are proposed as a new and novel technique to solve the problem of designing a robust Smith predictor PID controller for a plant with model uncertainties, capable of dealing with time-delays in an exact manner. The evolutionary scheme used, involves generating two separate populations, one representing the controller and the other the plant. The controller population is then co-evolved against a population of plants covering the plant uncertainty search space, such that the controller can control all the plants effectively. A time-domain cost function subjected to a frequency-domain vector margin stability constraint, is then deployed in order to obtain a robust controller design. This evolutionary approach is illustrated by evolving a Smith predictor PID controller for a linear plant which has a set of prescribed model uncertainties, and compares the results with the ones of robust PID control for the same uncertainty operating envelope
Keywords
genetic algorithms; SISO Smith predictor PID controllers; controller population; frequency-domain vector margin stability constraint; genetic algorithms; linear plant; model uncertainties; robust co-evolutionary design; robust controller design; time-delays; time-domain cost function; uncertainty search space;
fLanguage
English
Publisher
iet
Conference_Titel
Genetic Algorithms in Engineering Systems: Innovations and Applications, 1997. GALESIA 97. Second International Conference On (Conf. Publ. No. 446)
Conference_Location
Glasgow
ISSN
0537-9989
Print_ISBN
0-85296-693-8
Type
conf
DOI
10.1049/cp:19971231
Filename
681077
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