Simultaneous design of robust gain‐scheduled static output‐feedback controller and scaling matrices for linear parameter varying systems with inexact scheduling parameters
From MaRDI portal
Publication:6117468
DOI10.1002/rnc.6994MaRDI QIDQ6117468
Unnamed Author, Unnamed Author, Bei Lu
Publication date: 20 March 2024
Published in: International Journal of Robust and Nonlinear Control (Search for Journal in Brave)
structured uncertaintylinear parameter-varying systeminexact scheduling parametergain-scheduled static output-feedback control
Cites Work
- Unnamed Item
- Unnamed Item
- Switching LPV controller design under uncertain scheduling parameters
- Sufficient LMI conditions for reduced-order multi-objective \(\mathcal H_2/\mathcal H_\infty\) control of LTI systems
- Gain-scheduled static output feedback control for saturated LPV systems with bounded parameter variations
- State-feedback control for LPV systems with interval uncertain parameters
- Static output-feedback robust gain-scheduling control with guaranteed \(\mathcal H_2\) performance
- Improved robust gain-scheduling static output-feedback control for discrete-time LPV systems
- A new parametrization for static output feedback control of LPV discrete-time systems
- One-shot design of performance scaling matrices and observer-based gain-scheduled controllers depending on inexact scheduling parameters
- Extended LMI characterizations for stability and performance of linear systems
- LMI relaxations in robust control
- Gain‐scheduled continuous‐time control using polytope‐bounded inexact scheduling parameters
- Observer-Based Robust Controller Design With Simultaneous Optimization of Scaling Matrices
- A hybrid search based synthesis of static output feedback controllers for uncertain systems with application to multivariable PID control
- Improved multiobjective switching gain‐scheduled controller synthesis exploiting inexact scheduling parameters
- Static output‐feedback stabilization of discrete‐time linear parameter‐varying systems under actuator saturation
- Conservatism reduction for linear parameter‐varying control design facing inexact scheduling parameters illustrated on flight tests
- A successive convex optimization method for bilinear matrix inequality problems and its application to static output‐feedback control
This page was built for publication: Simultaneous design of robust gain‐scheduled static output‐feedback controller and scaling matrices for linear parameter varying systems with inexact scheduling parameters