Implementing resonators with geometrical nonlinearities in vibrational energy harvesting systems leads to considerable enhancement of their operational bandwidths. This advantage of nonlinear devices in comparison to their linear counterparts is much more obvious especially at small-scale where transition to nonlinear regime of vibration occurs at moderately small amplitudes of the base excitation. In this paper the nonlinear behavior of a disc-shaped piezoelectric laminated harvester considering midplane-stretching effect is investigated. Extended Hamilton’s principle is exploited to extract electromechanically coupled governing partial differential equations of the system. The equations are firstly order-reduced and then analytically solv...
Acknowledgement The authors acknowledge the financial supports of the National Natural Science Found...
Piezoelectric MicroElectroMechanical systems (MEMS) energy harvesting is an attractive technology fo...
Vibration energy harvesting converts mechanical energy from ambient sources to electricity to power ...
The ability to harness the waste mechanical energy and convert it into useful electrical power has m...
The deliberate introduction of nonlinearities is widely used as an effective technique for the bandw...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
AbstractWe study the performance of vibrational energy harvesting systems with piezoelectric and mag...
Broadband nonlinear energy harvesting capabilities of a parametrically excited bimorph piezoelectric...
This work is centered on the modeling, experimental identification, and dynamic interaction of inher...
This paper proposes a monostable nonlinear Piezoelectric Energy Harvester (PEH). The harvester is ba...
In order to make a piezoelectric vibration energy harvester collect more energy on a broader frequen...
This paper reports a comprehensive modeling and experimental characterization of a bridge shaped non...
The last two decades have witnessed several advances in micro-fabrication technologies and electroni...
With the rapid development of low-power electronic devices such as wireless sensor networks, wearabl...
Piezoelectric vibration-based energy harvesting systems have been used as an interesting alternative...
Acknowledgement The authors acknowledge the financial supports of the National Natural Science Found...
Piezoelectric MicroElectroMechanical systems (MEMS) energy harvesting is an attractive technology fo...
Vibration energy harvesting converts mechanical energy from ambient sources to electricity to power ...
The ability to harness the waste mechanical energy and convert it into useful electrical power has m...
The deliberate introduction of nonlinearities is widely used as an effective technique for the bandw...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
AbstractWe study the performance of vibrational energy harvesting systems with piezoelectric and mag...
Broadband nonlinear energy harvesting capabilities of a parametrically excited bimorph piezoelectric...
This work is centered on the modeling, experimental identification, and dynamic interaction of inher...
This paper proposes a monostable nonlinear Piezoelectric Energy Harvester (PEH). The harvester is ba...
In order to make a piezoelectric vibration energy harvester collect more energy on a broader frequen...
This paper reports a comprehensive modeling and experimental characterization of a bridge shaped non...
The last two decades have witnessed several advances in micro-fabrication technologies and electroni...
With the rapid development of low-power electronic devices such as wireless sensor networks, wearabl...
Piezoelectric vibration-based energy harvesting systems have been used as an interesting alternative...
Acknowledgement The authors acknowledge the financial supports of the National Natural Science Found...
Piezoelectric MicroElectroMechanical systems (MEMS) energy harvesting is an attractive technology fo...
Vibration energy harvesting converts mechanical energy from ambient sources to electricity to power ...