DocumentCode :
1243945
Title :
Flatness-based optimal noncausal output transitions for constrained nonlinear systems: case study on an isothermal continuously stirred tank reactor
Author :
Wang, G.L. ; Allgower, F.
Author_Institution :
Sch. of Inf. Sci. & Technol., Sun Yat-Sen Univ., Guangzhou, China
Volume :
152
Issue :
1
fYear :
2005
Firstpage :
105
Lastpage :
112
Abstract :
The issue of optimal output transition control for nonlinear differential flat systems with constraints is investigated. Of special interest is the generation of a state reference trajectory and a feedforward input, which are essential to the two-degree-of-freedom design. The proposed approach is to transfer the transition problem in the real output space into a trajectory planning issue in the flat output space. The distinguishing feature of our approach is the generation of a noncausal trajectory for the flat output. This approach is shown to be highly effective in creating performance improvements. It should also be noted that the proposed methodology guarantees that the planned trajectories are feasible for all nonlocal transitions. This allows the application of stable inversion in the planning of optimal output transitions. The proposed method is illustrated on a benchmark system, the isothermal continuous stirred tank reactor, although its applicability is much wider.
Keywords :
chemical reactors; control system synthesis; feedforward; nonlinear control systems; optimal control; constrained nonlinear systems; feedforward input; flatness-based optimal noncausal output transitions; isothermal continuously stirred tank reactor; nonlinear differential flat systems; optimal output transition control; state reference trajectory; two-degree-of-freedom design;
fLanguage :
English
Journal_Title :
Control Theory and Applications, IEE Proceedings
Publisher :
iet
ISSN :
1350-2379
Type :
jour
DOI :
10.1049/ip-cta:20041162
Filename :
1397377
Link To Document :
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