Fault‐tolerant finite‐time adaptive higher order sliding mode control with optimized parameters for attitude stabilization of spacecraft
From MaRDI portal
Publication:6063179
DOI10.1002/rnc.5934zbMath1527.93194OpenAlexW4200486584MaRDI QIDQ6063179
Unnamed Author, Abdelaziz Salah Saidi, Arunava Banerjee, Unnamed Author, Unnamed Author
Publication date: 2 December 2023
Published in: International Journal of Robust and Nonlinear Control (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/rnc.5934
Sensitivity (robustness) (93B35) Adaptive control/observation systems (93C40) Variable structure systems (93B12) Orbital mechanics (70M20)
Cites Work
- Principles of 2-sliding mode design
- Nonlinear disturbance observer-based robust control of attitude tracking of rigid spacecraft
- Chattering-free full-order recursive sliding mode control for finite-time attitude synchronization of rigid spacecraft
- Conventional and high order sliding mode control
- Continuous finite-time control for robotic manipulators with terminal sliding mode
- Robust controllers design with finite time convergence for rigid spacecraft attitude tracking control
- Fault‐tolerant spacecraft attitude control under actuator saturation and without angular velocity
- Sliding order and sliding accuracy in sliding mode control
- Chattering avoidance by second-order sliding mode control
- Spacecraft Anti‐Unwinding Attitude Control Using Second‐Order Sliding Mode
- Global second‐order sliding mode control for nonlinear uncertain systems
- When is it reasonable to implement the discontinuous sliding‐mode controllers instead of the continuous ones? Frequency domain criteria
- Finite-Time Stability of Continuous Autonomous Systems
- Robust stabilization of spacecraft attitude motion under magnetic control through time‐varying integral sliding mode
- An adaptive solution for robust control based on integral high‐order sliding mode concept
- Finite-time attitude tracking control for a rigid spacecraft using time-varying terminal sliding mode techniques
- Adaptive integral higher order sliding mode controller for uncertain systems
- Event‐triggered anti‐disturbance attitude control for rigid spacecrafts with multiple disturbances
- Chattering analysis for Lipschitz continuous sliding‐mode controllers
This page was built for publication: Fault‐tolerant finite‐time adaptive higher order sliding mode control with optimized parameters for attitude stabilization of spacecraft