Robust sensitive fault detection and estimation for single-rate and multirate nonlinear sampled-data systems
DOI10.1016/j.sysconle.2018.07.004zbMath1408.93127OpenAlexW2887401563WikidataQ129433438 ScholiaQ129433438MaRDI QIDQ1729037
Guangjun Liu, Horacio J. Marquez, Hossein Beikzadeh
Publication date: 27 February 2019
Published in: Systems \& Control Letters (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.sysconle.2018.07.004
Lipschitz conditionfault estimationlinear matrix inequality (LMI)nonlinear sampled-data systemsmultirate sampling\(H_- \slash H_\infty\) optimizationinput-to-error stable
Sensitivity (robustness) (93B35) Nonlinear systems in control theory (93C10) Discrete-time control/observation systems (93C55) Estimation and detection in stochastic control theory (93E10) (H^infty)-control (93B36) Automated systems (robots, etc.) in control theory (93C85) Sampled-data control/observation systems (93C57) Control/observation systems governed by ordinary differential equations (93C15)
Related Items
Cites Work
- Input-to-error stable observer for nonlinear sampled-data systems with application to one-sided Lipschitz systems
- Fault-tolerant control for a class of nonlinear sampled-data systems via a Euler approximate observer
- A framework for nonlinear sampled-data observer design via approximate discrete-time models and emulation
- An LMI approach to design robust fault detection filter for uncertain LTI systems.
- Optimal sampled-data control systems
- Dissipativity of nonlinear multirate sampled-data systems under emulation design
- Fault detection filter design for discrete-time nonlinear systems -- a mixed \(\mathcal{H}\_/\mathcal{H}_\infty\) optimization
- An LMI approach to \(\mathcal H_{-}\) index and mixed \(\mathcal H_{-} / \mathcal H_{\infty}\) fault detection observer design
- Open- and closed-loop dissipation inequalities under sampling and controller emulation
- Input-to-state stabilization for nonlinear dual-rate sampled-data systems via approximate discrete-time model
- Multirate Output Feedback Control of Nonlinear Networked Control Systems
- Multirate Observers for Nonlinear Sampled-Data Systems Using Input-to-State Stability and Discrete-Time Approximation
- Timely robust fault detection for multirate linear systems
- A geometric approach to nonlinear fault detection and isolation
- Fault detection for multirate sampled-data systems with time delays
- Multirate Sampled-Data Output Feedback Control With Application to Smart Material Actuated Systems
- A Framework for Stabilization of Nonlinear Sampled-Data Systems Based on Their Approximate Discrete-Time Models
- Observer-Based Fast Rate Fault Detection for a Class of Multirate Sampled-Data Systems
- Sufficient conditions for stabilization of sampled-data nonlinear systems via discrete-time approximations