ChuangLiu,XiaokuiYue,KekeShi,ZhaoweiSun
Spacecraft Attitude Control: A Linear Matrix Inequality Approach
Spacecraft Attitude Control: A Linear Matrix Inequality Approach
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- More about Spacecraft Attitude Control: A Linear Matrix Inequality Approach
Spacecraft Attitude Control: A Linear Matrix Inequality Approach utilizes convex optimization and linear matrix inequality (LMI) to address attitude control systems challenges, ensuring high-precision pointing and robustness in the face of external disturbances. It presents an LMI approach to spacecraft attitude control and develops a model-like state space for universal application. The book offers novel and robust controllers for spacecraft attitude control and second-order systems, providing an accessible introduction to the field and aiding researchers in improving robust control performance.
Format: Paperback / softback
Length: 384 pages
Publication date: 04 February 2022
Publisher: Elsevier - Health Sciences Division
Spacecraft Attitude Control: A Linear Matrix Inequality Approach is a groundbreaking method for solving problems related to spacecraft attitude control systems. It employs convex optimization techniques, particularly through the use of linear matrix inequalities (LMIs), to address complex challenges. The current generation of spacecraft demands high-precision pointing capabilities and robustness in the face of external disturbances and uncertainties. This book presents an LMI approach to spacecraft attitude control, demonstrating the ability to numerically solve all uncertainties involved in the maneuvering process. By developing a model-like state space through a mathematical representation of attitude control systems, the authors enable the application of the controller across a wide range of scenarios. The book showcases a diverse array of novel and robust controllers, designed specifically for spacecraft attitude control and easily adaptable to second-order systems. It serves as an accessible introduction to spacecraft attitude control and robust systems, providing an extensive survey of current research and offering valuable insights for researchers seeking to enhance control performance.
Weight: 450g
Dimension: 229 x 152 (mm)
ISBN-13: 9780323990059
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