Title :
Discrete-time static output-feedback H∞ controller design for vehicle suspensions
Author :
Palacios-Quinonero, Francisco ; Rubio-Massegu, Josep ; Rossell, Josep M. ; Reza Karimi, Hamid
Author_Institution :
Dept. of Appl. Math. III, Univ. Politec. de Catalunya (UPC), Barcelona, Spain
Abstract :
This paper provides a direct and practical presentation of a novel methodology for static output-feedback controller design. The proposed design strategy has been successfully applied in the fields of control systems for seismic protection of large buildings and multi-building structures, control of offshore wind turbines, and active control of vehicle suspensions. The positive results obtained in these initial applications clearly indicate that this approach could be an effective tool in a large variety of control problems, for which an LMI formulation of the statefeedback version of the problem is available. The main objective of the paper is to facilitate a brief and friendly presentation of the main ideas involved in the new design methodology. To this end, a discrete-time static output-feedback H∞ controller is designed for a simplified quarter-car suspension system. Numerical simulations indicate that the proposed controller exhibits a remarkably good behavior when compared with the corresponding statefeedback H∞ controller.
Keywords :
H∞ control; automobiles; control system synthesis; discrete time systems; linear matrix inequalities; state feedback; suspensions (mechanical components); LMI formulation; controller design strategy; discrete-time static output-feedback H∞ controller design; linear matrix inequality; numerical simulation; quarter-car suspension system; state feedback; vehicle suspension; Design methodology; Linear matrix inequalities; Optimization; Roads; Suspensions; Symmetric matrices; Time factors;
Conference_Titel :
Mechatronics and Control (ICMC), 2014 International Conference on
Print_ISBN :
978-1-4799-2537-7
DOI :
10.1109/ICMC.2014.7231988