Spacecraft Maneuver with Performance Guaranteed
Author | : Yufeng Gao |
Publisher | : Springer Nature |
Total Pages | : 452 |
Release | : |
Genre | : |
ISBN | : 9819946530 |
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Author | : Yufeng Gao |
Publisher | : Springer Nature |
Total Pages | : 452 |
Release | : |
Genre | : |
ISBN | : 9819946530 |
Author | : |
Publisher | : |
Total Pages | : 700 |
Release | : 1990 |
Genre | : Large space structures (Astronautics) |
ISBN | : |
Author | : |
Publisher | : |
Total Pages | : 674 |
Release | : 1986 |
Genre | : Large space structures (Astronautics) |
ISBN | : |
Author | : Guang-Ren Duan |
Publisher | : CRC Press |
Total Pages | : 482 |
Release | : 2013-06-17 |
Genre | : Computers |
ISBN | : 1466583002 |
Although LMI has emerged as a powerful tool with applications across the major domains of systems and control, there has been a need for a textbook that provides an accessible introduction to LMIs in control systems analysis and design. Filling this need, LMIs in Control Systems: Analysis, Design and Applications focuses on the basic analysis and d
Author | : |
Publisher | : |
Total Pages | : 326 |
Release | : 1991-12 |
Genre | : Large space structures (Astronautics) |
ISBN | : |
Author | : Yaguang Yang |
Publisher | : CRC Press |
Total Pages | : 328 |
Release | : 2019-02-06 |
Genre | : Science |
ISBN | : 0429822146 |
This book discusses all spacecraft attitude control-related topics: spacecraft (including attitude measurements, actuator, and disturbance torques), modeling, spacecraft attitude determination and estimation, and spacecraft attitude controls. Unlike other books addressing these topics, this book focuses on quaternion-based methods because of its many merits. The book lays a brief, but necessary background on rotation sequence representations and frequently used reference frames that form the foundation of spacecraft attitude description. It then discusses the fundamentals of attitude determination using vector measurements, various efficient (including very recently developed) attitude determination algorithms, and the instruments and methods of popular vector measurements. With available attitude measurements, attitude control designs for inertial point and nadir pointing are presented in terms of required torques which are independent of actuators in use. Given the required control torques, some actuators are not able to generate the accurate control torques, therefore, spacecraft attitude control design methods with achievable torques for these actuators (for example, magnetic torque bars and control moment gyros) are provided. Some rigorous controllability results are provided. The book also includes attitude control in some special maneuvers, such as orbital-raising, docking and rendezvous, that are normally not discussed in similar books. Almost all design methods are based on state-spaced modern control approaches, such as linear quadratic optimal control, robust pole assignment control, model predictive control, and gain scheduling control. Applications of these methods to spacecraft attitude control problems are provided. Appendices are provided for readers who are not familiar with these topics.
Author | : United States. National Aeronautics and Space Administration. Scientific and Technical Information Division |
Publisher | : |
Total Pages | : 192 |
Release | : 1989 |
Genre | : Astronautics |
ISBN | : |
Author | : Enrico Canuto |
Publisher | : Butterworth-Heinemann |
Total Pages | : 792 |
Release | : 2018-03-08 |
Genre | : Technology & Engineering |
ISBN | : 0081017952 |
Spacecraft Dynamics and Control: The Embedded Model Control Approach provides a uniform and systematic way of approaching space engineering control problems from the standpoint of model-based control, using state-space equations as the key paradigm for simulation, design and implementation. The book introduces the Embedded Model Control methodology for the design and implementation of attitude and orbit control systems. The logic architecture is organized around the embedded model of the spacecraft and its surrounding environment. The model is compelled to include disturbance dynamics as a repository of the uncertainty that the control law must reject to meet attitude and orbit requirements within the uncertainty class. The source of the real-time uncertainty estimation/prediction is the model error signal, as it encodes the residual discrepancies between spacecraft measurements and model output. The embedded model and the uncertainty estimation feedback (noise estimator in the book) constitute the state predictor feeding the control law. Asymptotic pole placement (exploiting the asymptotes of closed-loop transfer functions) is the way to design and tune feedback loops around the embedded model (state predictor, control law, reference generator). The design versus the uncertainty class is driven by analytic stability and performance inequalities. The method is applied to several attitude and orbit control problems. - The book begins with an extensive introduction to attitude geometry and algebra and ends with the core themes: state-space dynamics and Embedded Model Control - Fundamentals of orbit, attitude and environment dynamics are treated giving emphasis to state-space formulation, disturbance dynamics, state feedback and prediction, closed-loop stability - Sensors and actuators are treated giving emphasis to their dynamics and modelling of measurement errors. Numerical tables are included and their data employed for numerical simulations - Orbit and attitude control problems of the European GOCE mission are the inspiration of numerical exercises and simulations - The suite of the attitude control modes of a GOCE-like mission is designed and simulated around the so-called mission state predictor - Solved and unsolved exercises are included within the text - and not separated at the end of chapters - for better understanding, training and application - Simulated results and their graphical plots are developed through MATLAB/Simulink code