Advanced Attitude Control of Satellite [electronic resource] : A Modeling Error Compensation Approach / by Bing Xiao, Zhaoyue Chen, Jingwen Xu, Lu Cao.

Por: Xiao, Bing [author.]Colaborador(es): Chen, Zhaoyue [author.] | Xu, Jingwen [author.] | Cao, Lu [author.] | SpringerLink (Online service)Tipo de material: TextoTextoEditor: Singapore : Springer Nature Singapore : Imprint: Springer, 2024Edición: 1st ed. 2024Descripción: XXI, 267 p. 121 illus., 115 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9789819728473Tema(s): Control engineering | Robotics | Automation | Aerospace engineering | Astronautics | Control, Robotics, Automation | Aerospace Technology and AstronauticsFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 629.8 Clasificación LoC:TJ212-225TJ210.2-211.495Recursos en línea: Libro electrónicoTexto
Contenidos:
Part I Foundation -- Overview -- Preliminaries -- Part II Modeling Error Robust Compensation Attitude Control -- Observer-free Output Feedback Attitude Control -- Velocity-free Attitude Control with Actuator Constraint -- Velocity-free Attitude Fault-tolerant Control -- Part III Modeling Error Adaptive Compensation Attitude Control -- Adaptive Attitude Stabilization Control -- Fixed-time Optimal Attitude Control -- Faster Fixed-time Attitude Stabilization Control -- Part IV Observer-based Modeling Error Compensation Attitude Control -- Extended-state Observer-based Attitude Control -- Disturbance Observer-based Attitude Control -- Unknow Input Observer-based Attitude Control -- Conclusion.
En: Springer Nature eBookResumen: This book focuses on the high-accuracy attitude control system design and approaches for satellite with modeling error including system uncertainties, actuator faults, and disturbances. It presents a systematically and almost self-contained description of the many facets of envisaging, designing, implementing, or experimentally exploring modeling error compensation-based attitude control of satellites. The advanced treatment of practical issues in satellite attitude compensation control is one of the major features of the book, which is particularly suited for readers who are interested to learn the latest solutions in attitude control system design of satellites. The book intends to provide a unified platform for understanding and applicability of the modeling error compensation-based attitude control for different purposes in aerospace engineering and some related fields. It can benefit researchers, engineers, and graduate students in the fields of attitude control of satellites and other unmanned systems, aerospace engineering, etc.
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Part I Foundation -- Overview -- Preliminaries -- Part II Modeling Error Robust Compensation Attitude Control -- Observer-free Output Feedback Attitude Control -- Velocity-free Attitude Control with Actuator Constraint -- Velocity-free Attitude Fault-tolerant Control -- Part III Modeling Error Adaptive Compensation Attitude Control -- Adaptive Attitude Stabilization Control -- Fixed-time Optimal Attitude Control -- Faster Fixed-time Attitude Stabilization Control -- Part IV Observer-based Modeling Error Compensation Attitude Control -- Extended-state Observer-based Attitude Control -- Disturbance Observer-based Attitude Control -- Unknow Input Observer-based Attitude Control -- Conclusion.

This book focuses on the high-accuracy attitude control system design and approaches for satellite with modeling error including system uncertainties, actuator faults, and disturbances. It presents a systematically and almost self-contained description of the many facets of envisaging, designing, implementing, or experimentally exploring modeling error compensation-based attitude control of satellites. The advanced treatment of practical issues in satellite attitude compensation control is one of the major features of the book, which is particularly suited for readers who are interested to learn the latest solutions in attitude control system design of satellites. The book intends to provide a unified platform for understanding and applicability of the modeling error compensation-based attitude control for different purposes in aerospace engineering and some related fields. It can benefit researchers, engineers, and graduate students in the fields of attitude control of satellites and other unmanned systems, aerospace engineering, etc.

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