AC-DC converters employed for harvesting power from piezoelectric transducers can be divided into linear (i.e. diode bridge) and non-linear (i.e. synchronized switch harvesting on inductor, SSHI). This paper presents an analytical technique based on the measurement of the impedance circle of the piezoelectric element to determine whether either diode bridge or SSHI converter harvests more of the available power at the piezoelectric element
In Resonant Piezoelectric Vibration Energy Harvesters (RPVEHs) applications the maximization of the ...
This report presents a high efficiency and low power AC-DC active rectifier for piezoelectric energy...
Vibration energy harvesting with piezoelectric materials is of practical interest because of the dem...
AC-DC converters employed for harvesting power from piezoelectric transducers can be divided into li...
In the modern world, many portable devices are battery operated and would be a hassle to replace the...
Piezoelectric transducers are used for harvesting electrical power from mechanical vibrations and su...
International audienceMost often, piezoelectric generators are connected to a AC-DC converter, also ...
This research presents a simulation analysis for the AC-DC converter circuit with a different config...
The rise in popularity of harvesting energy from ambient vibrations has made compact, energy dense p...
Piezoelectric cantilever generated a voltage particularly dependent on the magnitude of vibration so...
In this study, we report a power management circuit for a combined piezoelectric- electrodynamic gen...
The electrical supply of portable electronic devices is a crucial problem, which may be solved by h...
This article presents an area efficient fully autonomous piezoelectric energy harvesting system to s...
This paper deals with energy harvesting based on piezoelectric principle and options of determining ...
For a conventional monolithic piezoelectric transducer (PT) using a full-bridge rectifier, there is ...
In Resonant Piezoelectric Vibration Energy Harvesters (RPVEHs) applications the maximization of the ...
This report presents a high efficiency and low power AC-DC active rectifier for piezoelectric energy...
Vibration energy harvesting with piezoelectric materials is of practical interest because of the dem...
AC-DC converters employed for harvesting power from piezoelectric transducers can be divided into li...
In the modern world, many portable devices are battery operated and would be a hassle to replace the...
Piezoelectric transducers are used for harvesting electrical power from mechanical vibrations and su...
International audienceMost often, piezoelectric generators are connected to a AC-DC converter, also ...
This research presents a simulation analysis for the AC-DC converter circuit with a different config...
The rise in popularity of harvesting energy from ambient vibrations has made compact, energy dense p...
Piezoelectric cantilever generated a voltage particularly dependent on the magnitude of vibration so...
In this study, we report a power management circuit for a combined piezoelectric- electrodynamic gen...
The electrical supply of portable electronic devices is a crucial problem, which may be solved by h...
This article presents an area efficient fully autonomous piezoelectric energy harvesting system to s...
This paper deals with energy harvesting based on piezoelectric principle and options of determining ...
For a conventional monolithic piezoelectric transducer (PT) using a full-bridge rectifier, there is ...
In Resonant Piezoelectric Vibration Energy Harvesters (RPVEHs) applications the maximization of the ...
This report presents a high efficiency and low power AC-DC active rectifier for piezoelectric energy...
Vibration energy harvesting with piezoelectric materials is of practical interest because of the dem...