Buch, Englisch, 630 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 449 g
Buch, Englisch, 630 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 449 g
ISBN: 978-0-443-44777-8
Verlag: Elsevier Science
Adaptive Predefined-Time Attitude Control for Spacecraft presents the latest advancements in spacecraft control dynamics, with a particular focus on time-bound strategies that guarantee rapid and smooth system stabilization under realistic mission constraints. Rooted in the expertise of scholars with extensive experience in nonlinear and adaptive control, the book establishes a solid theoretical foundation in finite-time and predefined-time formulations before transitioning to sophisticated techniques such as fuzzy logic, dynamic surface control, neural networks, and event-triggered design. Subsequent chapters broaden the scope to encompass multi-spacecraft coordination and time-triggered adaptation, reflecting the growing trend toward autonomy and intelligent systems in modern aerospace applications.
Readers are guided through a cohesive suite of state-of-the-art methodologies, along with insights into emerging trends and future frontiers, all engineered to optimize reliability, efficiency, and fault tolerance. Graduate students, early-career researchers, and experienced engineers in both academia and industry will find this volume a comprehensive and indispensable reference for the design and deployment of intelligent attitude control systems in modern flight and satellite missions.
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
Part I: Fundamentals and mathematical modeling
1. Introduction
2. Mathematical model of rigid spacecraft
Part II: Finite-time attitude control of rigid spacecraft
3. Neural-network-based adaptive finite-time output constraint control for rigid spacecraft
4. Finite-time command-filtered approximation-free attitude tracking control of rigid spacecraft
Part III: Fixed-time sliding mode attitude control of rigid spacecraft
5. Adaptive fixed-time control for rigid spacecraft using a double power reaching law
6. Adaptive nonsingular fixed-time attitude stabilization of uncertain spacecraft
7. Neural-network-based adaptive singularity-free fixed-time attitude tracking control for
spacecraft
Part IV: Predefined-time backstepping attitude control of rigid spacecraft
8. Adaptive nonsingular predefined-time control for attitude stabilization of rigid spacecraft
9. Predefined-time disturbance estimation and attitude control for rigid spacecraft
10. Predefined-time approximation-free attitude constraint control of rigid spacecraft
Part V: Predefined-time dynamic surface attitude control of rigid spacecraft
11. Adaptive fuzzy predefined-time dynamic surface control for attitude tracking of spacecraft with state constraints
12 Adaptive predefined-time event-triggered control for attitude consensus of multiple spacecraft with time-varying state constraints




