© 2015 American Automatic Control Council. The paper develops a Model Predictive Controller for constrained control of spacecraft attitude with reaction wheel actuators. The controller exploits a special formulation of the cost with the reference governor like term, a low complexity addition of integral action to guarantee offset-free tracking of attitude set points, and an online optimization algorithm for the solution of the Quadratic Programming problem which is tailored to run in fixed-point arithmetic. Simulations on a nonlinear space-craft model demonstrate that the MPC controller achieves good tracking performance while satisfying reaction wheel torque constraints. The controller also has low computational complexity and is suitable ...
A predictive controller was modified and applied to a microsatellite to show that attitude stabiliza...
Abstract — In this paper we present the design of a linear constrained MPC controller for magnetic a...
This dissertation contributes several control strategies that provide advanced capabilities in space...
Abstract — The paper develops a Model Predictive Con-troller for constrained control of spacecraft a...
© 2015 EUCA. In this paper we propose a Model Predictive Controller for spacecraft attitude tracking...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143101/1/1.G001923.pd
Rigid-flexible satellites are aerospace systems with flexible parts attached to their structures, su...
We develop nonlinear reference governor and nonlinear model predictive control schemes for constrain...
Embedded on-board-optimization-based guidance is a set of guidance schemes that provide spacecraft t...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143105/1/1.G000320.pd
Abstract — This paper further develops an approach for spacecraft relative motion control based on t...
A new approach to ACS (attitude control system) design is presented for three-axis precision pointin...
A new approach to ACS (attitude control system) design is presented for three-axis precision pointin...
A new approach to ACS (attitude control system) design is presented for three-axis precision pointin...
International audienceThe ability to robustly and precisely control the spacecraftrelative motion wi...
A predictive controller was modified and applied to a microsatellite to show that attitude stabiliza...
Abstract — In this paper we present the design of a linear constrained MPC controller for magnetic a...
This dissertation contributes several control strategies that provide advanced capabilities in space...
Abstract — The paper develops a Model Predictive Con-troller for constrained control of spacecraft a...
© 2015 EUCA. In this paper we propose a Model Predictive Controller for spacecraft attitude tracking...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143101/1/1.G001923.pd
Rigid-flexible satellites are aerospace systems with flexible parts attached to their structures, su...
We develop nonlinear reference governor and nonlinear model predictive control schemes for constrain...
Embedded on-board-optimization-based guidance is a set of guidance schemes that provide spacecraft t...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143105/1/1.G000320.pd
Abstract — This paper further develops an approach for spacecraft relative motion control based on t...
A new approach to ACS (attitude control system) design is presented for three-axis precision pointin...
A new approach to ACS (attitude control system) design is presented for three-axis precision pointin...
A new approach to ACS (attitude control system) design is presented for three-axis precision pointin...
International audienceThe ability to robustly and precisely control the spacecraftrelative motion wi...
A predictive controller was modified and applied to a microsatellite to show that attitude stabiliza...
Abstract — In this paper we present the design of a linear constrained MPC controller for magnetic a...
This dissertation contributes several control strategies that provide advanced capabilities in space...