Robust output feedback disturbance rejection control by simultaneously estimating state and disturbance
From MaRDI portal
Publication:763135
DOI10.1155/2011/568379zbMath1235.93234OpenAlexW2067226776WikidataQ58690810 ScholiaQ58690810MaRDI QIDQ763135
Publication date: 9 March 2012
Published in: Journal of Control Science and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1155/2011/568379
state estimationdisturbance estimationsliding mode observerdescriptor system form observerMIMO disturbed system
Estimation and detection in stochastic control theory (93E10) System structure simplification (93B11) Transformations (93B17)
Related Items (1)
Cites Work
- State and input estimation for a class of uncertain systems
- Sliding mode observers for fault detection and isolation
- Descriptor observer approaches for multivariable systems with measurement noises and application in fault detection and diagnosis
- ℋ︁∞ sliding mode observers for uncertain nonlinear Lipschitz systems with fault estimation synthesis
- Disturbance attenuation using proportional integral observers
- Estimation of states, faults and unknown disturbances in non-linear systems
- Almost invariant subspaces: An approach to high gain feedback design--Part I: Almost controlled invariant subspaces
- Disturbance decoupling by high gain feedback
- The peaking phenomenon and the global stabilization of nonlinear systems
- Design of observers for linear systems with unknown inputs
- Full-order observers for linear systems with unknown inputs
- Robust semiglobal stabilization of minimum-phase input-output linearizable systems via partial state and output feedback
- Compensator based output feedback sliding mode controller design
- On sliding mode observers via equivalent control approach
- Generalized state-space observers for chaotic synchronization and secure communication
- Sliding mode observers: a survey
This page was built for publication: Robust output feedback disturbance rejection control by simultaneously estimating state and disturbance