Threshold design for fault detection with first order sliding mode observers
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Publication:2097761
DOI10.1016/J.AUTOMATICA.2022.110600zbMath1505.93034OpenAlexW4295977472WikidataQ114200647 ScholiaQ114200647MaRDI QIDQ2097761
Twan Keijzer, Riccardo M. G. Ferrari
Publication date: 14 November 2022
Published in: Automatica (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.automatica.2022.110600
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Cites Work
- Partial unknown input reconstruction for linear systems
- Sliding mode observers for fault detection and isolation
- A novel sliding mode observer for state and fault estimation in systems not satisfying matching and minimum phase conditions
- Extended results on robust state estimation and fault detection
- Robust sensor fault estimation scheme for satellite attitude control systems
- A comparison of sliding mode and unknown input observers for fault reconstruction
- Integrated fault estimation and fault-tolerant control for uncertain Lipschitz nonlinear systems
- ℋ︁∞ sliding mode observers for uncertain nonlinear Lipschitz systems with fault estimation synthesis
- An LMI approach for designing sliding mode observers
- Fault detection and isolation for nonlinear systems via high‐order‐sliding‐mode multiple‐observer
- Robust detection of faulty actuators via unknown input observers
- Higher-order sliding modes, differentiation and output-feedback control
- Stochastic output noise effects in sliding mode state estimation
- Sliding mode observers for robust detection and reconstruction of actuator and sensor faults
- Robust Fault Reconstruction in Uncertain Linear Systems Using Multiple Sliding Mode Observers in Cascade
- Unknown input proportional multiple-integral observer design for linear descriptor systems: application to state and fault estimation
- Observation of linear systems with unknown inputs via high-order sliding-modes
- Fault diagnosis in linear systems via sliding mode observers
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