ABSTRACT: Satellite antenna design requirements are driving the satellite size to dimensions that cannot be launched into space using current technology. In order to reduce the launch size and mass of satellites, inflatable structures, also known as gossamer structures, are being considered. Inflatable space-based structures are susceptible to vibration disturbance due to their low stiffness and damping. This paper discusses the structural dynamics and vibration suppression via piezoelectric actuators of an inflatable torus. A commercial finite element package, ANSYS, is used to model the inflated torus. The effect of torus aspect ratio and inflation pressure on the vibratory response of the structure is investigated. The interaction with t...
Modeling for control of an inflatable space reflector, the linear 1-D case∗ T. Vo߆, J.M.A. Scherpen...
Abstract: An analytical solution to the equation of motion of a beam controlled with piezoceramic (P...
The goal of this study is the multi-mode structural vibration control in the composite fin-tip of an...
Most of modern satellites for Earth and Universe observation are equipped with large flexible append...
Larger and more powerful space based instruments are needed to meet increasingly sophisticated scien...
An effective investigation of alternative control strategies for the reduction of vibration levels i...
Inflatable structures are effective in space applications, as they are weight, volume and cost compe...
Abstract: This paper presents design, implementation and experimental results of active vibration co...
Space structures with their low structural damping, large size and high flexibility, tend to suffer ...
The inflatable deployablemembrane antenna structures have many advantages such as small folding size...
An effective investigation of alternative control strategies for the reduction of vibration levels i...
The scientific equipment being used on-board satellites sometimes requires a high degree of pointing...
The scientific equipment being used on-board satellites sometimes requires a high degree of pointing...
Modeling for control of an inflatable space reflector, the linear 1-D case∗ T. Vo߆, J.M.A. Scherpen...
Abstract: An experimental investigation of vibration testing and active control of a space rigidizab...
Modeling for control of an inflatable space reflector, the linear 1-D case∗ T. Vo߆, J.M.A. Scherpen...
Abstract: An analytical solution to the equation of motion of a beam controlled with piezoceramic (P...
The goal of this study is the multi-mode structural vibration control in the composite fin-tip of an...
Most of modern satellites for Earth and Universe observation are equipped with large flexible append...
Larger and more powerful space based instruments are needed to meet increasingly sophisticated scien...
An effective investigation of alternative control strategies for the reduction of vibration levels i...
Inflatable structures are effective in space applications, as they are weight, volume and cost compe...
Abstract: This paper presents design, implementation and experimental results of active vibration co...
Space structures with their low structural damping, large size and high flexibility, tend to suffer ...
The inflatable deployablemembrane antenna structures have many advantages such as small folding size...
An effective investigation of alternative control strategies for the reduction of vibration levels i...
The scientific equipment being used on-board satellites sometimes requires a high degree of pointing...
The scientific equipment being used on-board satellites sometimes requires a high degree of pointing...
Modeling for control of an inflatable space reflector, the linear 1-D case∗ T. Vo߆, J.M.A. Scherpen...
Abstract: An experimental investigation of vibration testing and active control of a space rigidizab...
Modeling for control of an inflatable space reflector, the linear 1-D case∗ T. Vo߆, J.M.A. Scherpen...
Abstract: An analytical solution to the equation of motion of a beam controlled with piezoceramic (P...
The goal of this study is the multi-mode structural vibration control in the composite fin-tip of an...