Dissipative control for a class of nonlinear descriptor systems
DOI10.1080/00207721.2014.913082zbMath1333.93191OpenAlexW2037629019MaRDI QIDQ2798436
Junchao Ren, Jing-Hao Li, Zhang, Qingling, Bo Men, Juan Zhou
Publication date: 12 April 2016
Published in: International Journal of Systems Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00207721.2014.913082
descriptor systemsbilinear matrix inequalitylinear matrix inequalities (LMIs)state feedback controllerdissipative control
Nonlinear systems in control theory (93C10) Lyapunov and other classical stabilities (Lagrange, Poisson, (L^p, l^p), etc.) in control theory (93D05) Control/observation systems governed by ordinary differential equations (93C15)
Related Items (2)
Cites Work
- Unnamed Item
- Dissipative performance control with output regulation for continuous-time descriptor systems
- \(\alpha\)-dissipativity analysis of singular time-delay systems
- Every storage function is a state function
- Dissipative dynamical systems: basic input-output and state properties
- Stability results for nonlinear feedback systems
- Dissipative control for linear discrete-time systems
- \(H_ \infty\) control for descriptor systems: A matrix inequalities approach
- Robust dissipative control for linear systems with dissipative uncertainty and nonlinear perturbation
- Dissipativity inequalities for continuous-time descriptor systems with applications to synthesis of control gains
- Dissipative dynamical systems. I: General theory
- Dissipative dynamical systems. II: Linear systems with quadratic supply rates
- Dissipative control for linear systems by static output feedback
- Robust control of descriptor discrete-time Markovian jump systems
- Algebraic Characterizations for Positive Realness of Descriptor Systems
- Robust stability and stabilization for singular systems with state delay and parameter uncertainty
- Dissipative systems analysis and control. Theory and applications
This page was built for publication: Dissipative control for a class of nonlinear descriptor systems