In this paper, the nonlinear modeling of beam energy harvester embedded with piezoelectric transducers is presented. Starting from a multibody dynamics perspective, a fully coupled electromechanical nonlinear beam model was derived and a geometrically exact finite volume beam element, including the circuit equation is developed. In this model, the beam resultants-strain constitutive law and mass properties are obtained from a two-dimensional beam cross-sectional modeling in which the electromechanical coupling effects are included. The results are verified against numerical and experimental results reported in the literature
Piezoelectric MicroElectroMechanical systems (MEMS) energy harvesting is an attractive technology fo...
Efficiently converting vibration energy from surrounding environment to electric energy for powering...
Implementing resonators with geometrical nonlinearities in vibrational energy harvesting systems lea...
In this paper, the nonlinear modeling of beam energy harvester embedded with piezoelectric transduce...
peer reviewedAn electromechanical model for beam-like piezoelectric energy harvesters based on Reiss...
In this paper, the authors introduce a model of a strain-based geometrically nonlinear piezoelectric...
This paper reports a comprehensive modeling and experimental characterization of a bridge shaped non...
The ability to harness the waste mechanical energy and convert it into useful electrical power has m...
This paper investigates the nonlinear electromechanical behaviour of a constrained bimorph piezoelec...
This paper presents a novel nonlinear piezoelectric energy harvesting system which consists of linea...
With the rapid development of low-power electronic devices such as wireless sensor networks, wearabl...
Broadband nonlinear energy harvesting capabilities of a parametrically excited bimorph piezoelectric...
The nonlinear beam with vertical combined excitations is proposed as an energy harvester. The nonlin...
Vibration energy harvesting holds great potential to achieve long-lifetime autonomous operation of l...
Over the past few years, structural health monitoring using wireless sensors has received significan...
Piezoelectric MicroElectroMechanical systems (MEMS) energy harvesting is an attractive technology fo...
Efficiently converting vibration energy from surrounding environment to electric energy for powering...
Implementing resonators with geometrical nonlinearities in vibrational energy harvesting systems lea...
In this paper, the nonlinear modeling of beam energy harvester embedded with piezoelectric transduce...
peer reviewedAn electromechanical model for beam-like piezoelectric energy harvesters based on Reiss...
In this paper, the authors introduce a model of a strain-based geometrically nonlinear piezoelectric...
This paper reports a comprehensive modeling and experimental characterization of a bridge shaped non...
The ability to harness the waste mechanical energy and convert it into useful electrical power has m...
This paper investigates the nonlinear electromechanical behaviour of a constrained bimorph piezoelec...
This paper presents a novel nonlinear piezoelectric energy harvesting system which consists of linea...
With the rapid development of low-power electronic devices such as wireless sensor networks, wearabl...
Broadband nonlinear energy harvesting capabilities of a parametrically excited bimorph piezoelectric...
The nonlinear beam with vertical combined excitations is proposed as an energy harvester. The nonlin...
Vibration energy harvesting holds great potential to achieve long-lifetime autonomous operation of l...
Over the past few years, structural health monitoring using wireless sensors has received significan...
Piezoelectric MicroElectroMechanical systems (MEMS) energy harvesting is an attractive technology fo...
Efficiently converting vibration energy from surrounding environment to electric energy for powering...
Implementing resonators with geometrical nonlinearities in vibrational energy harvesting systems lea...