Robust fault diagnosis of disturbed linear systems via a sliding mode high order differentiator
From MaRDI portal
Publication:4905784
DOI10.1080/00207179.2012.661463zbMath1256.93031OpenAlexW2081385750MaRDI QIDQ4905784
Maricela Figueroa, Jaime Pacheco, Francisco Javier Bejarano, José de Jesús Rubio
Publication date: 20 February 2013
Published in: International Journal of Control (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00207179.2012.661463
Perturbations in control/observation systems (93C73) Linear systems in control theory (93C05) Variable structure systems (93B12)
Related Items (4)
Output tracking of systems subjected to perturbations and a class of actuator faults based on HOSM observation and identification ⋮ Functional unknown input reconstruction of descriptor systems: application to fault detection ⋮ Adaptive fault-tolerant shape control for nonlinear Lipschitz stochastic distribution systems ⋮ An observer with controller to detect and reject disturbances
Cites Work
- Fault diagnosis for the vertical three-tank system via high-order sliding-mode observation
- Mixed \(\mathcal H_2/\mathcal H_{\infty}\) approach to fault detection of discrete linear repetitive processes
- Partial unknown input reconstruction for linear systems
- Unknown disturbance inputs estimation based on a state functional observer design.
- Implicit fault-tolerant control: Application to induction motors.
- Sliding mode observers for fault detection and isolation
- Robust fault detection with missing measurements
- Unknown Input and State Estimation for Unobservable Systems
- Robust detection of faulty actuators via unknown input observers
- A strong controllability and observability in linear multivariable control
- Higher-order sliding modes, differentiation and output-feedback control
- A geometric approach to nonlinear fault detection and isolation
- On the robust fault detection via a sliding mode disturbance observer
- Failure detection and identification
This page was built for publication: Robust fault diagnosis of disturbed linear systems via a sliding mode high order differentiator