This paper combines the nonlinear Udwadia-Kalaba control approach with the Assumed Mode Method to model flexible structures and derives an attitude controller for a spacecraft. The study case of this paper is a satellite with four flexible cantilever beams attached to a rigid central hub. Two main topics are covered in this paper. The first one is the formulation of the equation of motion and the second one is the nonlinear controller design. The combination of these two techniques is able to provide a controller that damps the vibration of a flexible structure while achieving the desired rigid-motion state
In this thesis, the problem of attitude dynamics and maneuvering of flexible, multibody space system...
Flexibility plays an important role in the design of space missions. Algorithms able to derive the d...
A relatively general formulation for studying the nonlinear dynamics and control of spacecraft with ...
This paper combines the nonlinear Udwadia-Kalaba control approach with the Assumed Mode Method to mo...
A design of a robust attitude control system for flexible spacecraft is proposed in this paper, sinc...
Abstract: The objective of this article is to evaluate the behaviour of a controller designed using ...
The general objective of this Ph.D. thesis is to study the dynamics and control of rigid and flexibl...
Due to inherent nonlinearity, the control of mechanical systems dictates the use of nonlinear techni...
During the last decades, large deployable structures are starting to be seen as a plausible configur...
Abstract: The paper discusses a method of synthesis of a nonlinear orientation system with gyro-flyw...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
This thesis presents a mathematical framework for precision attitude control of a spacecraft using t...
Abstract: This paper presents an investigation into development of feed-forward and feedback control...
In this thesis, the problem of attitude dynamics and maneuvering of flexible, multibody space system...
Flexibility plays an important role in the design of space missions. Algorithms able to derive the d...
A relatively general formulation for studying the nonlinear dynamics and control of spacecraft with ...
This paper combines the nonlinear Udwadia-Kalaba control approach with the Assumed Mode Method to mo...
A design of a robust attitude control system for flexible spacecraft is proposed in this paper, sinc...
Abstract: The objective of this article is to evaluate the behaviour of a controller designed using ...
The general objective of this Ph.D. thesis is to study the dynamics and control of rigid and flexibl...
Due to inherent nonlinearity, the control of mechanical systems dictates the use of nonlinear techni...
During the last decades, large deployable structures are starting to be seen as a plausible configur...
Abstract: The paper discusses a method of synthesis of a nonlinear orientation system with gyro-flyw...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
This thesis presents a mathematical framework for precision attitude control of a spacecraft using t...
Abstract: This paper presents an investigation into development of feed-forward and feedback control...
In this thesis, the problem of attitude dynamics and maneuvering of flexible, multibody space system...
Flexibility plays an important role in the design of space missions. Algorithms able to derive the d...
A relatively general formulation for studying the nonlinear dynamics and control of spacecraft with ...