A controller design approach for large space structures is presented, which consists of a primary attitude controller and a secondary or damping enhancement controller. The secondary controller, which uses several Annular Momentum Control Device (AMCD's), is shown to make the closed loop system asymptotically stable under relatively simple conditions. The primary controller using torque actuators (or AMCD's) and colocated attitude and rate sensors is shown to be stable. It is shown that the same AMCD's can be used for simultaneous actuation of primary and secondary controllers. Numerical results are obtained for a large, thin, completely free plate model
Control systems synthesis is considered for controlling the rigid body attitude and elastic motion o...
Large, flexible spacecraft are typically characterized by a large number of significant elastic mode...
Robustness properties are investigated for two types of controllers for large flexible space structu...
Stability and robustness of a two-level control system for large space structures were investigated....
Large space structure (LSS) secondary controllers to enhance inherent damping, and primary controlle...
The control of large space structures was studied to determine what, if any, limitations are imposed...
Presented here are the results of an advanced control design as well as a discussion of the requirem...
The dynamics and attitude and shape control of very large, inherently flexible spacecraft systems we...
The control of vibrations of large space structures by distributed sensors and actuators is studied....
Control problems of large aerospace structures are intrinsically interdisciplinary and require strat...
Assembly and operation of large space structures (LSS) in orbit will require robot-assisted docking ...
Math models were developed for various types of large flexible structures. These models were used to...
Basic research in the control of large space structures is discussed. Active damping and control of ...
Proposed large space structures have many characteristics that make them difficult to analyze and co...
Work performed in Large Space Structures Controls research and development program at Marshall Space...
Control systems synthesis is considered for controlling the rigid body attitude and elastic motion o...
Large, flexible spacecraft are typically characterized by a large number of significant elastic mode...
Robustness properties are investigated for two types of controllers for large flexible space structu...
Stability and robustness of a two-level control system for large space structures were investigated....
Large space structure (LSS) secondary controllers to enhance inherent damping, and primary controlle...
The control of large space structures was studied to determine what, if any, limitations are imposed...
Presented here are the results of an advanced control design as well as a discussion of the requirem...
The dynamics and attitude and shape control of very large, inherently flexible spacecraft systems we...
The control of vibrations of large space structures by distributed sensors and actuators is studied....
Control problems of large aerospace structures are intrinsically interdisciplinary and require strat...
Assembly and operation of large space structures (LSS) in orbit will require robot-assisted docking ...
Math models were developed for various types of large flexible structures. These models were used to...
Basic research in the control of large space structures is discussed. Active damping and control of ...
Proposed large space structures have many characteristics that make them difficult to analyze and co...
Work performed in Large Space Structures Controls research and development program at Marshall Space...
Control systems synthesis is considered for controlling the rigid body attitude and elastic motion o...
Large, flexible spacecraft are typically characterized by a large number of significant elastic mode...
Robustness properties are investigated for two types of controllers for large flexible space structu...