International audienceThe present study investigates the modeling of the vibration energy localization from a nonlinear quasi-periodic system. The periodic system consists of n moving magnets held by n elastic structures and coupled by a nonlinear magnetic force. The quasi-periodic system has been obtained by mistuning one of the n elastic structures of the system. The mistuning of the periodic system has been achieved by changing either the linear mechanical stiffness or the mass of the elastic structures. The whole system has been modeled by forced Duffing equations for each degree of freedom. The forced Duffing equations involve the geometric nonlinearity and the mechanical damping of the elastic structures and the magnetic nonlinearity ...
Structural vibrations are very common in aerospace and mechanical engineering systems, where dynamic...
International audienceIn this paper we develop a fully numerical approach to compute quasi-periodic ...
International audienceWe propose a multi-modal vibration energy harvesting approach based on arrays ...
International audienceThe present study investigates the modeling of the vibration energy localizati...
In the present paper, a quasi-periodic vibration energy harvester with magnetic coupling is proposed...
International audienceA multimodal electromagnetic vibration energy harvester based on a nonlinear q...
International audienceThe work reported here deals with the design and modeling of vibration energy ...
International audienceA multimodal vibration energy harvesting in a periodic system is proposed. The...
International audienceA mechanical periodic structure in presence of component perturbations can be ...
International audienceA nonlinear vibration energy harvester (VEH) based on electromagnetic transduc...
Vibration energy harvesting by exploiting the multimodal approach in a quasi-periodic system is prop...
International audienceIn this paper we study a generic model of a nonlinear quasiperiodic vibration ...
We examine the energy harvesting system consisted of two different masses (magnets) attached to piez...
Structural vibrations are very common in aerospace and mechanical engineering systems, where dynamic...
International audienceIn this paper we develop a fully numerical approach to compute quasi-periodic ...
International audienceWe propose a multi-modal vibration energy harvesting approach based on arrays ...
International audienceThe present study investigates the modeling of the vibration energy localizati...
In the present paper, a quasi-periodic vibration energy harvester with magnetic coupling is proposed...
International audienceA multimodal electromagnetic vibration energy harvester based on a nonlinear q...
International audienceThe work reported here deals with the design and modeling of vibration energy ...
International audienceA multimodal vibration energy harvesting in a periodic system is proposed. The...
International audienceA mechanical periodic structure in presence of component perturbations can be ...
International audienceA nonlinear vibration energy harvester (VEH) based on electromagnetic transduc...
Vibration energy harvesting by exploiting the multimodal approach in a quasi-periodic system is prop...
International audienceIn this paper we study a generic model of a nonlinear quasiperiodic vibration ...
We examine the energy harvesting system consisted of two different masses (magnets) attached to piez...
Structural vibrations are very common in aerospace and mechanical engineering systems, where dynamic...
International audienceIn this paper we develop a fully numerical approach to compute quasi-periodic ...
International audienceWe propose a multi-modal vibration energy harvesting approach based on arrays ...