Scaling technique for prescribed-time output feedback stabilization: autonomous and non-autonomous paradigms and their comparative study
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Publication:6494968
DOI10.1016/J.JFRANKLIN.2024.01.043MaRDI QIDQ6494968
Yury V. Orlov, Ramón I. Verdés Kairuz, Luis T. Aguilar
Publication date: 30 April 2024
Published in: Journal of the Franklin Institute (Search for Journal in Brave)
Stabilization of systems by feedback (93D15) Variable structure systems (93B12) Finite-time stability (93D40)
Cites Work
- Unnamed Item
- Sliding modes in control and optimization. Transl. from the Russian
- Time-varying feedback for regulation of normal-form nonlinear systems in \textit{prescribed} finite time
- Robust observer design with prescribed settling-time bound and finite varying gains
- Time space deformation approach to prescribed-time stabilization: synergy of time-varying and non-Lipschitz feedback designs
- Finite-time stabilization of linear systems by bounded linear time-varying feedback
- Nonsmooth Lyapunov analysis in finite and infinite dimensions
- Prescribed-time output feedback for linear systems in controllable canonical form
- Finite-time control of perturbed dynamical systems based on a generalized time transformation approach
- A dynamic high-gain design for prescribed-time regulation of nonlinear systems
- Homogeneous high order sliding mode design: a Lyapunov approach
- Higher-order sliding modes, differentiation and output-feedback control
- Fixed‐time output stabilization and fixed‐time estimation of a chain of integrators
- On optimal predefined‐time stabilization
- Finite Time Stability and Robust Control Synthesis of Uncertain Switched Systems
- Finite-Time Stability of Continuous Autonomous Systems
- Control Performance Assessment: Theoretical Analyses and Industrial Practice
- On the design of nonautonomous fixed‐time controllers with a predefined upper bound of the settling time
- Stabilization for a Perturbed Chain of Integrators in Prescribed Time
- Prescribed-Time Observers for Linear Systems in Observer Canonical Form
- Levant's Arbitrary-Order Exact Differentiator: A Lyapunov Approach
- Homogeneous Approximation, Recursive Observer Design, and Output Feedback
- Chattering-Free Digital Sliding-Mode Control With State Observer and Disturbance Rejection
- Nonlinear Feedback Design for Fixed-Time Stabilization of Linear Control Systems
- High-Gain Observers in Nonlinear Feedback Control
- Autonomous Output Feedback Stabilization With Prescribed Settling-Time Bound
- Adaptive Prescribed-Time Control for a Class of Uncertain Nonlinear Systems
- Prescribed‐time control of uncertain strict‐feedback‐like systems
- A predefined‐time first‐order exact differentiator based on time‐varying gains
- On inherent limitations in robustness and performance for a class of prescribed-time algorithms
- Prescribed-time cooperative guidance law against manoeuvring target with input saturation
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