Title :
A frequency domain optimisation algorithm for simultaneous design of performance weights and controllers in μ-synthesis
Author :
Lanzon, Alexander ; Richards, Robert J.
Author_Institution :
Dept. of Eng., Cambridge Univ., UK
Abstract :
A novel iterative procedure is proposed in this paper as a valuable alternative/complement to D-K iterations frequently used in μ-synthesis. This new procedure gives both a robustly stabilising controller and performance weights which together achieve a closed-loop μ-value which is slightly less than unity, thereby immediately guaranteeing robust performance. The performance weights given by this algorithm maximise the achieved performance for the particular plant set considered according to some sensible cost function. The designer is only required to specify the desired directionality of the optimisation according to his engineering insight. Of course, a sensible plant set and a sensible directionality for the optimisation are still required for a sensible control problem. The algorithm proposed here thus eliminates the trial and error process usually adopted by designers in selecting such performance weights
Keywords :
closed loop systems; control system synthesis; frequency-domain synthesis; iterative methods; optimal control; singular value decomposition; μ-synthesis; closed-loop μ-value; controller design; frequency domain optimisation algorithm; iterative procedure; performance weight design; robustly stabilising controller; Algorithm design and analysis; Cost function; Design engineering; Design optimization; Error correction; Frequency domain analysis; Iterative algorithms; Robustness; Uncertainty; Weight control;
Conference_Titel :
Decision and Control, 1999. Proceedings of the 38th IEEE Conference on
Conference_Location :
Phoenix, AZ
Print_ISBN :
0-7803-5250-5
DOI :
10.1109/CDC.1999.833254