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Fault-Tolerant Attitude Control of Spacecraft (Paperback): Qinglei Hu, Bing Xiao, Bo Li, Youmin Zhang Fault-Tolerant Attitude Control of Spacecraft (Paperback)
Qinglei Hu, Bing Xiao, Bo Li, Youmin Zhang
R3,608 Discovery Miles 36 080 Ships in 12 - 17 working days

Fault-Tolerant Attitude Control of Spacecraft presents the fundamentals of spacecraft fault-tolerant attitude control systems, along with the most recent research and advanced, nonlinear control techniques. This book gives researchers a self-contained guide to the complex tasks of envisaging, designing, implementing and experimenting by presenting designs for integrated modeling, dynamics, fault-tolerant attitude control, and fault reconstruction for spacecraft. Specifically, the book gives a full literature review and presents preliminaries and mathematical models, robust fault-tolerant attitude control, fault-tolerant attitude control with actuator saturation, velocity-free fault tolerant attitude control, finite-time fault-tolerant attitude tracking control, and active fault-tolerant attitude contour. Finally, the book looks at the future of this interesting topic, offering readers a one-stop solution for those working on fault-tolerant attitude control for spacecraft.

Control Allocation for Spacecraft Under Actuator Faults (Hardcover, 1st ed. 2021): Qinglei Hu, Bo Li, Bing Xiao, Youmin Zhang Control Allocation for Spacecraft Under Actuator Faults (Hardcover, 1st ed. 2021)
Qinglei Hu, Bo Li, Bing Xiao, Youmin Zhang
R4,136 Discovery Miles 41 360 Ships in 12 - 17 working days

This book provides a systematical and comprehensive description of some facets of modeling, designing, analyzing and exploring the control allocation and fault-tolerant control problems for over-actuated spacecraft attitude control system under actuator failures, system uncertainties and disturbances. The book intends to provide a unified platform for understanding and applicability of the fault-tolerant attitude control and control allocation for different purposes in aerospace engineering and some related fields. And it is particularly suited for readers who are interested to learn solutions in spacecraft attitude control system design and related engineering applications.

Autonomous Safety Control of Flight Vehicles (Paperback): Xiang Yu, Lei Guo, Youmin Zhang, Jin Jiang Autonomous Safety Control of Flight Vehicles (Paperback)
Xiang Yu, Lei Guo, Youmin Zhang, Jin Jiang
R1,438 Discovery Miles 14 380 Ships in 12 - 17 working days

Aerospace vehicles are by their very nature a crucial environment for safety-critical systems. By virtue of an effective safety control system, the aerospace vehicle can maintain high performance despite the risk of component malfunction and multiple disturbances, thereby enhancing aircraft safety and the probability of success for a mission. Autonomous Safety Control of Flight Vehicles presents a systematic methodology for improving the safety of aerospace vehicles in the face of the following occurrences: a loss of control effectiveness of actuators and control surface impairments; the disturbance of observer-based control against multiple disturbances; actuator faults and model uncertainties in hypersonic gliding vehicles; and faults arising from actuator faults and sensor faults. Several fundamental issues related to safety are explicitly analyzed according to aerospace engineering system characteristics; while focusing on these safety issues, the safety control design problems of aircraft are studied and elaborated on in detail using systematic design methods. The research results illustrate the superiority of the safety control approaches put forward. The expected reader group for this book includes undergraduate and graduate students but also industry practitioners and researchers. About the Authors: Xiang Yu is a Professor with the School of Automation Science and Electrical Engineering, Beihang University, Beijing, China. His research interests include safety control of aerospace engineering systems, guidance, navigation, and control of unmanned aerial vehicles. Lei Guo, appointed as "Chang Jiang Scholar Chair Professor", is a Professor with the School of Automation Science and Electrical Engineering, Beihang University, Beijing, China. His research interests include anti-disturbance control and filtering, stochastic control, and fault detection with their applications to aerospace systems. Youmin Zhang is a Professor in the Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, Montreal, Quebec, Canada. His research interests include fault diagnosis and fault-tolerant control, and cooperative guidance, navigation, and control (GNC) of unmanned aerial/space/ground/surface vehicles. Jin Jiang is a Professor in the Department of Electrical & Computer Engineering, Western University, London, Ontario, Canada. His research interests include fault-tolerant control of safety-critical systems, advanced control of power plants containing non-traditional energy resources, and instrumentation and control for nuclear power plants.

Control Allocation for Spacecraft Under Actuator Faults (Paperback, 1st ed. 2021): Qinglei Hu, Bo Li, Bing Xiao, Youmin Zhang Control Allocation for Spacecraft Under Actuator Faults (Paperback, 1st ed. 2021)
Qinglei Hu, Bo Li, Bing Xiao, Youmin Zhang
R4,172 Discovery Miles 41 720 Ships in 10 - 15 working days

This book provides a systematical and comprehensive description of some facets of modeling, designing, analyzing and exploring the control allocation and fault-tolerant control problems for over-actuated spacecraft attitude control system under actuator failures, system uncertainties and disturbances. The book intends to provide a unified platform for understanding and applicability of the fault-tolerant attitude control and control allocation for different purposes in aerospace engineering and some related fields. And it is particularly suited for readers who are interested to learn solutions in spacecraft attitude control system design and related engineering applications.

Active Fault Tolerant Control Systems - Stochastic Analysis and Synthesis (Paperback, 2003 ed.): Mufeed Mahmoud, Jin Jiang,... Active Fault Tolerant Control Systems - Stochastic Analysis and Synthesis (Paperback, 2003 ed.)
Mufeed Mahmoud, Jin Jiang, Youmin Zhang
R2,993 Discovery Miles 29 930 Ships in 10 - 15 working days

Modern technological systems rely on sophisticated control functions to meet increased performance requirements. For such systems, Fault Tolerant Control Systems (FTCS) need to be developed. Active FTCS are dependent on a Fault Detection and Identification (FDI) process to monitor system performance and to detect and isolate faults in the systems. The main objective of this book is to study and to validate some important issues in real-time Active FTCS by means of theoretical analysis and simulation. Several models are presented to achieve this objective, taking into consideration practical aspects of the system to be controlled, performance deterioration in FDI algorithms, and limitations in reconfigurable control laws.

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