Title :
Nonlinear Reliable Control With Application to a Vehicle Antilock Brake System
Author :
Yew-Wen Liang ; Chih-Chiang Chen ; Der-Cherng Liaw ; Yuan-Tin Wei
Author_Institution :
Dept. of Electr. Eng., Nat. Chiao Tung Univ., Hsinchu, Taiwan
Abstract :
This paper explores the design of active reliable control systems for a class of uncertain nonlinear affine systems using an integral-type sliding mode control (ISMC) scheme. The presented scheme not only maintains the main advantages of the ISMC design, including robustness, rapid response and easy implementation, but it can also tolerate some actuator faults when fault detection and diagnosis information is available. In this study, the uncertainties and/or disturbances are not required to be of the matched type; however, when they are matched, the state trajectories of the nominal healthy subsystem and the uncertain faulty system are identical. As a result, engineers can predictively address the matched uncertain faulty system performance in light of the performance of the nominal healthy subsystem. The analytic results are also applied to the study of a vehicle brake reliable control system. Simulation results demonstrate the benefits of the proposed scheme.
Keywords :
brakes; control system synthesis; fault diagnosis; fault tolerance; mechanical variables control; nonlinear control systems; robust control; variable structure systems; vehicle dynamics; ISMC design; active reliable control system design; actuator faults; fault detection and diagnosis information; integral-type sliding mode control scheme; matched uncertain faulty system performance; nominal healthy subsystem; robustness; state trajectories; uncertain faulty system; uncertain nonlinear affine systems; vehicle antilock brake system; vehicle brake reliable control system; Fault tolerance; Nonlinear control systems; Reliability engineering; Riccati equations; Robustness; Sliding mode control; Antilock brake system; Reliable control; integral-type sliding mode control; robustness; state-dependent Riccati equation;
Journal_Title :
Industrial Informatics, IEEE Transactions on
DOI :
10.1109/TII.2012.2234470