Design of sliding observers for Lipschitz nonlinear system using a new time-averaged Lyapunov function
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Publication:5197947
DOI10.1080/00207179.2018.1441551zbMath1423.93080OpenAlexW2804684135WikidataQ129787435 ScholiaQ129787435MaRDI QIDQ5197947
Sagar Mehta, Krishna Vijayaraghavan
Publication date: 2 October 2019
Published in: International Journal of Control (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00207179.2018.1441551
Nonlinear systems in control theory (93C10) Lyapunov and other classical stabilities (Lagrange, Poisson, (L^p, l^p), etc.) in control theory (93D05) Variable structure systems (93B12)
Cites Work
- Unnamed Item
- Disturbance estimator as a state observer with extended Kalman filter for robotic manipulator
- Lyapunov-Krasovskiĭ functionals and application to input delay compensation for linear time-invariant systems
- Global sliding-mode observer with adjusted gains for locally Lipschitz systems
- Adaptive full-order and reduced-order observers for the Lur'e differential inclusion system
- Reduced-order \(H_{\infty}\) filtering for singular systems
- Stability results involving time-averaged Lyapunov function derivatives
- Optimal unbiased filtering via linear matrix inequalities
- Fault-tolerant control of a nonlinear system actuator fault based on sliding mode control
- Lyapunov-Krasovskij approach to the robust stability analysis of time-delay systems
- \(H_{\infty }\) filtering for singular systems with communication delays
- An equation for continuous chaos
- Nonlinear unknown input sliding mode observer based chaotic system synchronization and message recovery scheme with uncertainty
- Observers for a class of Lipschitz systems with extension to \(H_{\infty }\) performance analysis
- Observer design for systems with multivariable monotone nonlinearities
- Generalised observer design for dissipative Lipschitz nonlinear systems in the presence of measurement noise
- Quantitative fault estimation for a class of non-linear systems
- Modeling and Control of Elastic Joint Robots
- Existence and design of observers for nonlinear systems: Relation to distance to unobservability
- Linear Matrix Inequalities in System and Control Theory
- Observers for Lipschitz nonlinear systems
- High‐order sliding‐mode observer for linear time‐varying systems with unknown inputs
- Sensor fault diagnostics for a class of non-linear systems using linear matrix inequalities
- Sliding-mode estimators for a class of non-linear systems affected by bounded disturbances
- Nonlinear robust H-infinity filtering for a class of uncertain systems via convex optimization
- Adaptive observer-based fault estimation for a class of Lipschitz nonlinear systems
- High‐gain observers in nonlinear feedback control
- Nonlinear observer for simultaneous states and unknown parameter estimation
- A note on observers for Lipschitz nonlinear systems
- Robust observer‐based stabilization of Lipschitz nonlinear uncertain systems via LMIs ‐ discussions and new design procedure
- Nonlinear Observer for Bounded Jacobian Systems, With Applications to Automotive Slip Angle Estimation
- High-Gain Observers in Nonlinear Feedback Control
- Nonlinear observers: A circle criterion design and robustness analysis
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