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This book presents the dynamic modeling and attitude control of
flexible spacecraft with time-varying parameters. The dynamic
characteristics, vibration control methods and attitude
stabilization methods for spacecraft are systematically studied in
respects of the theoretical modeling, numerical simulation and the
ground experiment. Three active control theories in complex mode
space are presented for flexible space structures. Optimal slew
strategies based on variable amplitudes input shaping methods and
coupling control methods are proposed for stabilization of flexible
spacecraft. The research provides an important way to solve the
problem of high-precision attitude control of flexible spacecraft
with time-varying parameters. This book is appropriate for the
researchers who focus on the multi-body dynamics, attitude and
vibration control of flexible spacecraft.
This book presents the dynamic modeling and attitude control of
flexible spacecraft with time-varying parameters. The dynamic
characteristics, vibration control methods and attitude
stabilization methods for spacecraft are systematically studied in
respects of the theoretical modeling, numerical simulation and the
ground experiment. Three active control theories in complex mode
space are presented for flexible space structures. Optimal slew
strategies based on variable amplitudes input shaping methods and
coupling control methods are proposed for stabilization of flexible
spacecraft. The research provides an important way to solve the
problem of high-precision attitude control of flexible spacecraft
with time-varying parameters. This book is appropriate for the
researchers who focus on the multi-body dynamics, attitude and
vibration control of flexible spacecraft.
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