Title :
P·SPR·D+I control of linear MIMO systems with time-delay by application of high gain feedback
Author_Institution :
Fac. of Sci. & Technol., Keio Univ., Yokohama, Japan
Abstract :
This paper is concerned with set-point servo problem of linear time-delay systems. First, we formulate P·SPR·D control of linear MIMO time-delay systems and make stability analysis by applying Lyapunov´s direct method and LMI technique. Next, we investigate high gain output feedback theorem for state time-delay systems being minimum phase. Stability analysis is made based on Lyapunov´s direct method. By applying the above theorem, we establish P·SPR·D or P·SPR·D+I control for the control-input time-delay system. Here the system is converted into minimum phase one by P, SPR, D elements and then the high gain feedback is applied to adjust P·SPR·D controller parameters in order to asymptotically stabilize the closed-loop system. LMI technique is used to make the zero dynamics be asymptotically stable. The effectiveness of the proposed method is confirmed by the simulation results of various plants.
Keywords :
Lyapunov methods; MIMO systems; asymptotic stability; closed loop systems; delays; feedback; linear matrix inequalities; linear systems; three-term control; LMI technique; Lyapunov direct method; P·SPR·D controller parameters; P·SPR·D+I control; asymptotic stability analysis; closed-loop system; control-input time-delay system; high-gain output feedback theorem; linear MIMO time-delay systems; minimum phase; set-point servo problem; zero dynamics; Closed loop systems; Delays; MIMO; Output feedback; PD control; Stability analysis; LMI; P·SPR·D+I control; high gain output feedback; stabilization; time-delay system;
Conference_Titel :
Control Applications (CCA), 2014 IEEE Conference on
Conference_Location :
Juan Les Antibes
DOI :
10.1109/CCA.2014.6981502