Title :
Design and experimental evaluation of robust variable structure control for hydraulic actuators
Author :
Jerouane, Mohammed ; Sepehri, Nariman ; Lamnabhi-Lagarrigue, Francoise ; Abou, Seraphin Clially
Author_Institution :
Lab. des Signaux et Syst., CNRS - Supelec, Gif-sur-Yvette, France
Abstract :
In this article we design and experimentally evaluate a variable structure force control law for a hydraulic system interacting with the environment. For this purpose we use a nonlinear mathematical model where the nonlinear dynamics are explicitly addressed in order to achieve robust performance over a wide range of operating conditions. The sliding mode procedure is carried out to design a robust controller that satisfies performance specifications for force regulation. The controller is derived using the equivalent control method complemented by a reaching law approach to further improve the performance. After deriving the dynamics of the equilibrium manifold, rigorous stability verification for the system is provided. The controller was implemented on a fully instrumented hydraulic actuator. A set of experiments were performed to study the effect of variation in force set-point, supply pressure, hydraulic parameters, and environmental stiffness. The experimental results show that the proposed controller is robust to the variation of hydraulic parameters as well as environmental stiffness.
Keywords :
control system synthesis; force control; hydraulic actuators; nonlinear control systems; robust control; variable structure systems; environmental stiffness; equivalent control method; hydraulic actuators; hydraulic parameters; hydraulic system; nonlinear mathematical model; robust control; variable structure force control; Force control; Hydraulic actuators; Hydraulic systems; Manifolds; Mathematical model; Nonlinear dynamical systems; Robust control; Robustness; Sliding mode control; Stability;
Conference_Titel :
Control Conference, 2004. 5th Asian
Conference_Location :
Melbourne, Victoria, Australia
Print_ISBN :
0-7803-8873-9