Model reference control of LPV systems
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Publication:468194
DOI10.1016/j.jfranklin.2009.04.006zbMath1298.93163OpenAlexW2041241127MaRDI QIDQ468194
Publication date: 6 November 2014
Published in: Journal of the Franklin Institute (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jfranklin.2009.04.006
linear matrix inequalitysingular value decompositioncoupled-tank processlinear parameter varying systemmodel reference control
Design techniques (robust design, computer-aided design, etc.) (93B51) Linear systems in control theory (93C05) Control/observation systems governed by ordinary differential equations (93C15)
Related Items (17)
Robust state-feedback control of uncertain LPV systems: an LMI-based approach ⋮ \(H_\infty\) filter design for nonlinear parameter-varying systems with quantized measurements ⋮ Reachability and stabilization of scheduled steady-states for LPV single-input systems ⋮ Model reference adaptive control for aero-engine based on system equilibrium manifold expansion model ⋮ Full-order and reduced-order observers for linear parameter-varying systems with one-sided Lipschitz nonlinearities and disturbances using parameter-dependent Lyapunov function ⋮ Robust model reference tracking for uncertain second‐order nonlinear systems with application to robot manipulator ⋮ Mixed H2/H∞ model reference control of linear parameter‐varying discrete‐time systems with real‐time application to aeropendulum system ⋮ State estimation strategy for a class of nonlinear algebro-differential parameter-varying systems ⋮ Parameter estimation on linear time-varying systems ⋮ Model reference FTC for LPV systems using virtual actuators and set‐membership fault estimation ⋮ Eigenstructure assignment for linear parameter-varying systems with applications ⋮ On robust stability and set invariance of switched linear parameter varying systems ⋮ Pre-filtering in continuous-time quadratic gain-scheduled and robust state-feedback control ⋮ Robust quasi-LPV model reference FTC of a quadrotor UAV subject to actuator faults ⋮ \(\mathcal{H}_\infty\) control of event-triggered quasi-LPV systems based on an exact discretization approach -- a linear matrix inequality approach ⋮ Robust fault estimation and compensation for LPV systems under actuator and sensor faults ⋮ High-order fully-actuated system approaches: Part IX. Generalised PID control and model reference tracking
Uses Software
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