Parameterizations of the state feedback controllers for linear multivariable systems.
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Publication:1416315
DOI10.1016/S0898-1221(02)00214-6zbMath1103.93336OpenAlexW1997843252MaRDI QIDQ1416315
H. A. Tehrani, Seyed Mehdi Karbassi
Publication date: 14 December 2003
Published in: Computers \& Mathematics with Applications (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/s0898-1221(02)00214-6
Related Items (7)
Control of fractional periodic discrete-time linear systems by parametric state feedback matrices ⋮ A parametric approach for eigenvalue assignment by static output feedback ⋮ Robust simultaneous stabilization control method for two port-controlled Hamiltonian systems: controller parameterization ⋮ Simultaneous control of linear systems by state feedback ⋮ Control of fractional periodic discrete-time linear systems by partial eigenvalue assignment of state feedback matrices ⋮ Eigenvalue assignment by minimal state-feedback gain in LTI multivariable systems ⋮ Time-optimal control of disturbance-rejection tracking systems for discrete-time time-delayed systems by state feedback
Cites Work
- Unnamed Item
- The minimum number of degrees of freedom in state feedback control
- Robust pole assignment in linear state feedback
- On parametric state feedback design
- Parameterization of the class of deadbeat controllers via the theory of decoupling
- Pole assignment by state transition graph
- State regulation in linear discrete-time systems in minimum time
- New method of parametric eigenvalue assignment in state feedback control
- Closed-loop control system robustness improvement by a parameterised state feedback
- Parametric time-optimal control of linear discrete-time systems by state feedback Part 1. Regular Kronecker invariants
- Parametric time-optimal control of linear discrete-time systems by state feedback Part 2. Irregular Kronecker invariants
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