Harvesting energy from ambient vibrations in order to power autonomous sensors is a challenging issue. The aim of this work is to compare the power output from an innovative wideband fractal-inspired piezoelectric converter to that from a traditional multicantilever piezoelectric energy converter. In a given frequency range, the converters are tuned on the same eigenfrequencies. The effect of the input acceleration and of the resistive load applied to the converters is investigated experimentally for each of the three eigenfrequencies in the range between 0 and 120 Hz. The fractal-inspired converter exhibits a significantly higher specific output power at the first and third of the eigenfrequencies investigated
This work presents a simple and innovative piezoelectric energy harvester, inspired by fractal geome...
A multifrequency mechanoelectrical piezoelectric converter intended for powering autonomous sensors ...
Vibration energy harvesting is an attractive technique for potential powering of wireless sensors an...
Harvesting energy from ambient vibrations in order to power autonomous sensors is a challenging issu...
Harvesting energy from ambient vibrations in order to power autonomous sensors is a challenging issu...
In order to develop self-powered wireless sensor nodes, many energy harvesting devices that are able...
A promising harvesting technique, in terms of simplicity and efficiency, is the conversion of ambien...
In order to develop self-powered wireless sensor nodes, many energy harvesting devices, able to conv...
Harvesting kinetic ambient energy from vibrations or impact loads to obtain electrical energy useful...
A promising harvesting technique, in terms of simplicity and efficiency, is the conversion of ambien...
A promising harvesting technique, in terms of simplicity and efficiency, is the conversion of ambien...
An important issue in the field of energy harvesting through piezoelectric materials is the design o...
An important issue in the field of energy harvesting through piezoelectric materials is the design o...
Energy harvesting devices capable of converting freely-available ambient energy into electrical ener...
Energy harvesting from ambient vibrations exploiting piezoelectric materials is an efficient solutio...
This work presents a simple and innovative piezoelectric energy harvester, inspired by fractal geome...
A multifrequency mechanoelectrical piezoelectric converter intended for powering autonomous sensors ...
Vibration energy harvesting is an attractive technique for potential powering of wireless sensors an...
Harvesting energy from ambient vibrations in order to power autonomous sensors is a challenging issu...
Harvesting energy from ambient vibrations in order to power autonomous sensors is a challenging issu...
In order to develop self-powered wireless sensor nodes, many energy harvesting devices that are able...
A promising harvesting technique, in terms of simplicity and efficiency, is the conversion of ambien...
In order to develop self-powered wireless sensor nodes, many energy harvesting devices, able to conv...
Harvesting kinetic ambient energy from vibrations or impact loads to obtain electrical energy useful...
A promising harvesting technique, in terms of simplicity and efficiency, is the conversion of ambien...
A promising harvesting technique, in terms of simplicity and efficiency, is the conversion of ambien...
An important issue in the field of energy harvesting through piezoelectric materials is the design o...
An important issue in the field of energy harvesting through piezoelectric materials is the design o...
Energy harvesting devices capable of converting freely-available ambient energy into electrical ener...
Energy harvesting from ambient vibrations exploiting piezoelectric materials is an efficient solutio...
This work presents a simple and innovative piezoelectric energy harvester, inspired by fractal geome...
A multifrequency mechanoelectrical piezoelectric converter intended for powering autonomous sensors ...
Vibration energy harvesting is an attractive technique for potential powering of wireless sensors an...