A Reconfiguration-Based Fault-Tolerant Control Method for Nonlinear Uncertain Systems
Tu Yuanyuan, Dayi Wang, Steven X. Ding, Fangzhou Fu, Wenbo Li · IEEE Transactions on Automatic Control · 2021
This article addresses reconfiguration-based fault-tolerant control (FTC) with robust guaranteed performance for nonlinear uncertain systems under actuator faults. A PAssive/ACTive combined FTC method is proposed based on reliable control, which synthesizes the advantages of the active and passive FTC and strikes a balance between the performance and complexity of the method. Moreover, the reliability overcost of this method is reduced to balance the system nominal performance and reconfigurability. In this procedure, the$\theta$-D method is used to solve the Hamilton–Jacobi–Bellman (HJB) and generalized HJB equations. Effectiveness of the proposed method is verified by a numerical example.