International audienceThis paper focuses on designing, via the minimization of a suitable cost function, an input sequence to guarantee active fault diagnosis (AFD) of discrete-time linear parameter-varying systems regardless of how the scheduling variables change in the scheduling set. Convex polyhedrons are used to characterize the sets of system uncertainties such that the designed input sequence leads to outputs which are consistent with a unique fault mode or healthy mode. Considering the smoothness and energy of the input sequence simultaneously, the optimal input sequence is obtained by solving a family of linear constrained quadratic programming (LCQP) problems in a brute-force way, which will lead to inefficiency when the number of...
This paper presents a fault tolerant control (FTC) design for polytopic uncertain linear parameter-v...
Developed in the paper, is a systematic design frameworkfor parameter-dependent fault diagnosis, wit...
International audienceRobust dynamic output design most often relies on nonconvex problems. This is ...
International audienceThis paper focuses on designing, via the minimization of a suitable cost funct...
International audienceThis paper focuses on the design of on-line optimal input sequence for robust ...
International audienceThis paper proposes an invariant-set based minimal detectable fault (MDF) comp...
International audienceThis paper presents the mathematical conditions and the associated design meth...
This paper focuses on robust fault residual generation for Uncertain Unknown Inputs Linear Parameter...
The work presented in this paper focuses on the design of robust Fault Detection and Isolation (FDI)...
International audienceOptimal robust state estimation (SE) and fault detection (FD) methods of discr...
International audienceThis paper proposes a robust state and fault estimation (SFE) method for discr...
This paper presents a fault detection approach for discrete-time affine linear parameter varying sys...
This paper presents a fault tolerant control (FTC) design for polytopic uncertain linear parameter-v...
Developed in the paper, is a systematic design frameworkfor parameter-dependent fault diagnosis, wit...
International audienceRobust dynamic output design most often relies on nonconvex problems. This is ...
International audienceThis paper focuses on designing, via the minimization of a suitable cost funct...
International audienceThis paper focuses on the design of on-line optimal input sequence for robust ...
International audienceThis paper proposes an invariant-set based minimal detectable fault (MDF) comp...
International audienceThis paper presents the mathematical conditions and the associated design meth...
This paper focuses on robust fault residual generation for Uncertain Unknown Inputs Linear Parameter...
The work presented in this paper focuses on the design of robust Fault Detection and Isolation (FDI)...
International audienceOptimal robust state estimation (SE) and fault detection (FD) methods of discr...
International audienceThis paper proposes a robust state and fault estimation (SFE) method for discr...
This paper presents a fault detection approach for discrete-time affine linear parameter varying sys...
This paper presents a fault tolerant control (FTC) design for polytopic uncertain linear parameter-v...
Developed in the paper, is a systematic design frameworkfor parameter-dependent fault diagnosis, wit...
International audienceRobust dynamic output design most often relies on nonconvex problems. This is ...