Analytical and finite element electromechanical models that take into account the fact that the piezoelectric sheet does not cover the whole substrate beam are developed. A linear analysis of the analytical model is performed to determine the optimal load resistance. The analytical and finite element models are validated with experimental measurements. The results show that the analytical model that takes into account the fact that the piezoelectric patch does not cover the whole beam predicts accurately the experimental measurements. The finite element results yield a slight discrepancy in the global frequency and a slight overestimation in the value of the harvested power at resonance. On the contrary, using an approximate analytical mode...
In this paper, a utility piezoelectric energy harvester with low frequency and high-output voltage i...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
ABSTRACT: An analytical electromechanical model is proposed to predict the deflection, voltage, and ...
Analytical and finite element electromechanical models that take into account the fact that the piez...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
From the last few decades, the piezoelectric materials are playing a vital role in the field of ener...
This paper explores the applicability of using the multiphysics finite element method to model a pie...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
This paper proposes a versatile non-linear model for predicting piezoelectric energy harvester perfo...
Electromechanical modelling efforts in the research field of vibration-based energy harvesting have ...
The paper aims to assess and improve the performances of a multilayer piezoelectric MEMS device for ...
The paper aims to assess and improve the performances of a multilayer piezoelectric MEMS device for ...
The paper aims to assess and improve the performances of a multilayer piezoelectric MEMS device for ...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
In this paper, a utility piezoelectric energy harvester with low frequency and high-output voltage i...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
ABSTRACT: An analytical electromechanical model is proposed to predict the deflection, voltage, and ...
Analytical and finite element electromechanical models that take into account the fact that the piez...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
From the last few decades, the piezoelectric materials are playing a vital role in the field of ener...
This paper explores the applicability of using the multiphysics finite element method to model a pie...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
This paper proposes a versatile non-linear model for predicting piezoelectric energy harvester perfo...
Electromechanical modelling efforts in the research field of vibration-based energy harvesting have ...
The paper aims to assess and improve the performances of a multilayer piezoelectric MEMS device for ...
The paper aims to assess and improve the performances of a multilayer piezoelectric MEMS device for ...
The paper aims to assess and improve the performances of a multilayer piezoelectric MEMS device for ...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
In this paper, a utility piezoelectric energy harvester with low frequency and high-output voltage i...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
ABSTRACT: An analytical electromechanical model is proposed to predict the deflection, voltage, and ...