Title :
Using polynomial functions for a time varying sliding surface with angular information
Author :
Tokat, Sezai ; Eray, Osman
Author_Institution :
Comput. Eng. Dept., Pamukkale Univ., Denizli, Turkey
Abstract :
Sliding surface translation that has been defined using angular information as a linear function of time provides an equally spaced rotation of the sliding surface and a smoother control under predefined error state constraints. In this study, second order single-input non-autonomous dynamic open-loop systems will be considered and a higher order polynomial will be used to define the time-varying structure of the angular information. Then, it will be shown via simulations that different phase plane trajectories could be obtained with the proposed method. For the simulations, the trajectory tracking problem will be considered. Then, the same phase plane characteristics obtained using a continuously time-varying linear sliding surface design method selected from the literature will be directly obtained by assigning the polynomial coefficients of the angular sliding surface.
Keywords :
continuous time systems; control system synthesis; linear systems; open loop systems; polynomials; time-varying systems; variable structure systems; angular information; angular sliding surface; continuously time-varying linear sliding surface design method; error state constraints; higher order polynomial; linear function; phase plane characteristics; phase plane trajectories; polynomial coefficients; polynomial functions; second order single-input nonautonomous dynamic open-loop systems; sliding surface translation; time varying sliding surface; time-varying structure; trajectory tracking problem; Mathematical model; Numerical models; Polynomials; System performance; Time-varying systems; Trajectory; Angular Rotation; Sliding Mode Control; Sliding Surface Design; Time-Varying Sliding Surface;
Conference_Titel :
Recent Advances in Sliding Modes (RASM), 2015 International Workshop on
Conference_Location :
Istanbul
DOI :
10.1109/RASM.2015.7154654