This paper presents experimentally-verified multiphysics finite element model of a wideband vibration energy harvester with impact coupling, which operates on the principle of frequency up-conversion: under low-frequency harmonic base excitation a cantilever-type resonator (with resonant frequency of 18.8 Hz) impacts a high-frequency piezoelectric cantilever, which starts freely vibrate at its resonant frequency of 374 Hz. Such input frequency amplification enables efficient power generation under low-frequency ambient excitations. The model was implemented in COMSOL and the contact between the cantilevers was formulated by using a nonlinear viscoelastic model. Reported results of dynamical and electrical testing of the fabricated vibration...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
Analytical and finite element electromechanical models that take into account the fact that the piez...
A novel design of a multifrequency mechanical resonator with piezoelectric materials for energy harv...
This paper presents experimentally-verified multiphysics finite element model of a wideband vibratio...
This paper presents experimentally-verified multiphysics finite element model of a wideband vibratio...
Frequency up-conversion is a promising technique for energy harvesting in low frequency environments...
In this paper, a novel impact-based frequency up-converting hybrid energy harvester (FUCHEH) was pro...
In this paper, a novel impact-based frequency up-converting hybrid energy harvester (FUCHEH) was pro...
AbstractThis work presents an approach for increasing operational bandwidth of a vibration energy ha...
Most piezoelectric energy harvesting research has focused on developing on-resonance harvesters that...
This paper explores the applicability of using the multiphysics finite element method to model a pie...
AbstractThe paper presents a lumped parameter model of a vibration energy harvester consisting of a ...
This study proposes a multi-frequency response piecewise-linear piezoelectric vibration energy harve...
Vibration-based energy harvesting is a growing field for generating low-power electricity to use in ...
Vibration-based energy harvesting is a growing field for generating low-power electricity to use in ...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
Analytical and finite element electromechanical models that take into account the fact that the piez...
A novel design of a multifrequency mechanical resonator with piezoelectric materials for energy harv...
This paper presents experimentally-verified multiphysics finite element model of a wideband vibratio...
This paper presents experimentally-verified multiphysics finite element model of a wideband vibratio...
Frequency up-conversion is a promising technique for energy harvesting in low frequency environments...
In this paper, a novel impact-based frequency up-converting hybrid energy harvester (FUCHEH) was pro...
In this paper, a novel impact-based frequency up-converting hybrid energy harvester (FUCHEH) was pro...
AbstractThis work presents an approach for increasing operational bandwidth of a vibration energy ha...
Most piezoelectric energy harvesting research has focused on developing on-resonance harvesters that...
This paper explores the applicability of using the multiphysics finite element method to model a pie...
AbstractThe paper presents a lumped parameter model of a vibration energy harvester consisting of a ...
This study proposes a multi-frequency response piecewise-linear piezoelectric vibration energy harve...
Vibration-based energy harvesting is a growing field for generating low-power electricity to use in ...
Vibration-based energy harvesting is a growing field for generating low-power electricity to use in ...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
Analytical and finite element electromechanical models that take into account the fact that the piez...
A novel design of a multifrequency mechanical resonator with piezoelectric materials for energy harv...