This paper proposes a MEMS piezoelectric converter for energy harvesting from vibrations which exploits nonlinear effects to broaden the operating bandwidth. The converter is composed of an array of cantilevers with different geometric dimensions. Piezoelectric layer and electrodes have been deposited on the cantilevers by a custom low-curing temperature post process. Nonlinearity is achieved by the magnetic interaction of a magnet and ferromagnetic particles deposited on the cantilever tips. Preliminary results show that the converter behaves like a nonlinear system and a downshift of the resonant frequency of the cantilevers with respect to the linear resonant frequency is observed, as expected
In recent years, utilizing kinetic energy in mechanical vibrations has become an interest...
AbstractA MEMS-based piezoelectric energy harvesting (PiezoEH) system is proposed and investigated n...
This article proposes an array of nonlinear piezomagnetoelastic energy harvesters (NPEHs) for scaven...
This work proposes and experimentally validates a vibration energy harvester which combines the mult...
AbstractThis work proposes and experimentally validates a vibration energy harvester which combines ...
Energy harvesting from wideband and random vibrations demands for techniques and solutions to overco...
Power harvesters from mechanical vibrations are commonly linear mechanical resonators that are most ...
This work proposes a piezoelectric energy harvester where the combination of the multi-frequency and...
Vibration energy harvesting using piezoelectric material has received great research interest in the...
Vibration harvesters typically are linear mass-spring devices working at resonance. A different appr...
Vibration energy harvesting using piezoelectric material has received great research interest in the...
AbstractPower harvesters from mechanical vibrations are commonly linear mechanical resonators that a...
Role of piezoelectric energy harvesters has gained interest in supplying power for micro devices suc...
Smart structural health monitoring through wireless sensors is gaining significant importance over t...
The vibrational energy harvesting has been essentially applied to power up low-power electronics, mi...
In recent years, utilizing kinetic energy in mechanical vibrations has become an interest...
AbstractA MEMS-based piezoelectric energy harvesting (PiezoEH) system is proposed and investigated n...
This article proposes an array of nonlinear piezomagnetoelastic energy harvesters (NPEHs) for scaven...
This work proposes and experimentally validates a vibration energy harvester which combines the mult...
AbstractThis work proposes and experimentally validates a vibration energy harvester which combines ...
Energy harvesting from wideband and random vibrations demands for techniques and solutions to overco...
Power harvesters from mechanical vibrations are commonly linear mechanical resonators that are most ...
This work proposes a piezoelectric energy harvester where the combination of the multi-frequency and...
Vibration energy harvesting using piezoelectric material has received great research interest in the...
Vibration harvesters typically are linear mass-spring devices working at resonance. A different appr...
Vibration energy harvesting using piezoelectric material has received great research interest in the...
AbstractPower harvesters from mechanical vibrations are commonly linear mechanical resonators that a...
Role of piezoelectric energy harvesters has gained interest in supplying power for micro devices suc...
Smart structural health monitoring through wireless sensors is gaining significant importance over t...
The vibrational energy harvesting has been essentially applied to power up low-power electronics, mi...
In recent years, utilizing kinetic energy in mechanical vibrations has become an interest...
AbstractA MEMS-based piezoelectric energy harvesting (PiezoEH) system is proposed and investigated n...
This article proposes an array of nonlinear piezomagnetoelastic energy harvesters (NPEHs) for scaven...