Title :
Coefficient ratios-based robust sliding surface and integral sliding mode control designs with optimal transient responses
Author_Institution :
Electr.-Electron. Eng. Dept., Abdullah Gul Univ., Kayseri, Turkey
Abstract :
A coefficient ratio-based sliding surface algorithm and an integral sliding mode control approach are proposed for multivariable dynamical systems. The sliding surface design problem is reduced to the specification of the desired time constant of closed-loop systems. The proposed scheme is able to accomplish a non-overshoot transient response and a short settling time for multivariable systems. The resulting sliding surfaces are robust and optimal in the existence of parameter perturbations. An integral sliding mode control approach is also developed for robust tracking by using the coefficient ratio-based robust sliding surface designs. The developed methods are implemented on a flexible robotic manipulator and a strike aircraft system, and the numerical simulation results are provided in order to show the validity and feasibility of the methods.
Keywords :
aircraft control; closed loop systems; control system synthesis; flexible manipulators; multivariable control systems; optimal control; robust control; transient response; variable structure systems; closed-loop systems; coefficient ratio-based robust sliding surface algorithm; flexible robotic manipulator; integral sliding mode control design approach; multivariable dynamical systems; nonovershoot transient response; numerical simulation; optimal transient responses; parameter perturbations; robust tracking; settling time; strike aircraft system;
Journal_Title :
Control Theory & Applications, IET
DOI :
10.1049/iet-cta.2014.0138