Reorientation maneuvers represent a key task for large satellites. This work considers a space vehicle with solar panels and reaction wheels as actuation devices. Solar panels are modeled as flexural beams, using the modal decomposition technique. An inertia-free nonlinear attitude control algorithm, which enjoys quasi-global stability properties, is employed for the numerical simulation of a large reorientation maneuver. Preliminary analysis with ideal actuation allows sizing the control system and identifying the expected elastic displacements. Then, the actuation dynamics is included, and the actual torque transferred to the vehicle no longer coincides with the commanded one, supplied by the nonlinear control algorithm. Moreover, the sol...
The low-frequency flexible modes of solar arrays on spacecraft are excited by the minimum-time bang-...
The low-frequency flexible modes of solar arrays on spacecraft are excited by the minimum-time bang-...
This work presents a novel spacecraft attitude control architecture using strain-actuated solar arra...
Reorientation maneuvers represent a key task for large satellites. This work considers a space vehic...
This thesis presents a mathematical framework for precision attitude control of a spacecraft using t...
Recent NASA mission plans require spacecraft to undergo potentially significant maneuvers (or dynami...
This paper presents a novel control architecture and algorithm for precision attitude control of a o...
We present a control law for large-angle single-axis rotational maneuvers of a spacecraft-beamtip bo...
We present a control law for large-angle single-axis rotational maneuvers of a spacecraft-beamtip bo...
Technology areas are identified in which better analytical and/or experimental methods are needed to...
This paper faces with the problem maneuver control of a spacecraf solar panels, actuated by thrust...
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...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
The low-frequency flexible modes of solar arrays on spacecraft are excited by the minimum-time bang-...
The low-frequency flexible modes of solar arrays on spacecraft are excited by the minimum-time bang-...
This work presents a novel spacecraft attitude control architecture using strain-actuated solar arra...
Reorientation maneuvers represent a key task for large satellites. This work considers a space vehic...
This thesis presents a mathematical framework for precision attitude control of a spacecraft using t...
Recent NASA mission plans require spacecraft to undergo potentially significant maneuvers (or dynami...
This paper presents a novel control architecture and algorithm for precision attitude control of a o...
We present a control law for large-angle single-axis rotational maneuvers of a spacecraft-beamtip bo...
We present a control law for large-angle single-axis rotational maneuvers of a spacecraft-beamtip bo...
Technology areas are identified in which better analytical and/or experimental methods are needed to...
This paper faces with the problem maneuver control of a spacecraf solar panels, actuated by thrust...
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...
This paper presents an approach to large-angle rotational maneuvers of a spacecraft-beam-tip body co...
The low-frequency flexible modes of solar arrays on spacecraft are excited by the minimum-time bang-...
The low-frequency flexible modes of solar arrays on spacecraft are excited by the minimum-time bang-...
This work presents a novel spacecraft attitude control architecture using strain-actuated solar arra...