Title :
Simple causal fixed-structure feedforward control law for general continuous-time LTI SISO systems
Author :
Michalek, Maciej Marcin
Author_Institution :
Dept. of Control & Syst. Eng., Poznan Univ. of Technol. (PUT), Poznan, Poland
Abstract :
Feedforward control design for time-varying reference signals becomes a non-trivial problem when the plant dynamics is nonminimum-phase, since the inverse of a plant model is unstable or non-causal. A possible approach in this case is to use a stable approximate inverse of a plant model. Several solutions of this kind, devised in a frequency domain, have been proposed in the literature. An alternative approach to feedforward control design proposed in this article utilizes simple interpretation of an internal plant-model structure in a time domain. Following this approach a simple causal fixed-structure feedforward controller is proposed in the form of a linear combination of a reference trajectory and its time-derivatives. By providing explicit formulas for weighting parameters of the combination, it is shown how one can compensate for the detrimental influence of a time delay and right-half-plane zeros on the resultant tracking performance. The concept has been examined by simulation examples.
Keywords :
continuous time systems; control system synthesis; feedforward; frequency-domain analysis; nonlinear dynamical systems; signal processing; time-domain analysis; time-varying systems; feedforward control design; frequency domain; general continuous-time LTI SISO systems; internal plant-model structure; linear time invariant system; nonminimum-phase; plant dynamics model; reference trajectory; right-half-plane zeros; simple causal fixed-structure feedforward control law; time delay; time domain; time-derivatives; time-varying reference signals; tracking performance; weighting parameters; Computer aided instruction; Control design; Equations; Feedforward neural networks; Mathematical model; Poles and zeros;
Conference_Titel :
Control Conference (ECC), 2014 European
Conference_Location :
Strasbourg
Print_ISBN :
978-3-9524269-1-3
DOI :
10.1109/ECC.2014.6862155