Abstract
Tensegrity systems are selfstressed reticulate space structure. They are defined as a set of elements maintained in compression inside a continous set of tense components, wich are generally cables. As lightweight frames, they are subject to deformation and vibration issues when faced to external loads, climate, human, or seismic. We are interested in this thesis to the vibration control of a tensegrity plane grid. The objective is the active damping of the first two modes, by controlling actuators integrated into the structure. A robust control law is developed to minimize the vibration level while maintaining the same efficiency when the stiffness or mass varies. Using simulation, new active tensegrity structures that use similaractuation principle can be proposed.