Control system design automation with robust tracking thumbprint performance using a multiobjective evolutionary algorithm
Kay Chen Tan, T.H. Lee, Eik Fun Khor · 2003
This paper develops a multiobjective evolutionary based methodology for control system design automation of robust tracking thumbprint performances in QFT. Unlike conventional two-stage design approach, the technique is capable of evolving both nominal controller and pre-filter concurrently without the need of QFT bound computation and manual loop-shaping procedure. It is shown that the method can easily accommodate practical soft/hard constraints and allows engineers to examine the different design trade-offs. Validation upon a benchmark QFT design problem illustrates the usefulness of the proposed methodology.