Small-scale wind energy can be harvested for wireless sensing applications by exploiting the galloping phenomenon of a bluff body attached to a piezoelectric cantilever. Certain predictive model is required to understand the behavior of such a galloping-based piezoelectric energy harvester (GPEH). Conventional analytical and numerical models have simplified the interface circuit as a pure resistor. In practice, the energy generated by the harvester should be rectified before delivery to a real application. In such a case, the formulation of analytical or numerical model becomes cumbersome considering the complex coupling between the structure, fluid, piezoelectric transducer and practical interface circuit. This paper proposes an equivalent...
textGalloping of structures such as transmission lines and bridges is a classical aeroelastic instab...
In the 21st century, researchers have been showing keen interest in the areas of wireless networking...
The cut-in wind speed and the power output are the two main concerns of a galloping energy harvester...
Small-scale wind energy can be harvested for wireless sensing applications by exploiting the gallopi...
Harvesting flow energy by exploiting transverse galloping of a bluff body attached to a piezoelectri...
Copyright © 2017 Techno-Press, Ltd. The interdisciplinary research area of small scale energy harves...
Low-speed wind energy has potential to be captured for powering micro-electro-mechanical systems or ...
Aeroelastic instabilities have been frequently exploited for energy harvesting purpose to power stan...
Wind energy is ubiquitous in both outdoor and indoor environments, yet small-scale energy harvesting...
Modeling and comparative analysis of galloping-based hybrid piezoelectric-inductive energy harvestin...
Due to a large oscillation amplitude, galloping can be an admissible scenario to actuate the piezoel...
Small-scale energy harvesting from ambient vibration induced by aerodynamic instabilities can be use...
In this paper, the maximum obtainable energy from a galloping cantilever beam is found. The system c...
Small wind energy harvesting converts aeroelastic vibration into electricity and can provide indepen...
Aiming to predict the performance of galloping piezoelectric energy harvesters, a theoretical model ...
textGalloping of structures such as transmission lines and bridges is a classical aeroelastic instab...
In the 21st century, researchers have been showing keen interest in the areas of wireless networking...
The cut-in wind speed and the power output are the two main concerns of a galloping energy harvester...
Small-scale wind energy can be harvested for wireless sensing applications by exploiting the gallopi...
Harvesting flow energy by exploiting transverse galloping of a bluff body attached to a piezoelectri...
Copyright © 2017 Techno-Press, Ltd. The interdisciplinary research area of small scale energy harves...
Low-speed wind energy has potential to be captured for powering micro-electro-mechanical systems or ...
Aeroelastic instabilities have been frequently exploited for energy harvesting purpose to power stan...
Wind energy is ubiquitous in both outdoor and indoor environments, yet small-scale energy harvesting...
Modeling and comparative analysis of galloping-based hybrid piezoelectric-inductive energy harvestin...
Due to a large oscillation amplitude, galloping can be an admissible scenario to actuate the piezoel...
Small-scale energy harvesting from ambient vibration induced by aerodynamic instabilities can be use...
In this paper, the maximum obtainable energy from a galloping cantilever beam is found. The system c...
Small wind energy harvesting converts aeroelastic vibration into electricity and can provide indepen...
Aiming to predict the performance of galloping piezoelectric energy harvesters, a theoretical model ...
textGalloping of structures such as transmission lines and bridges is a classical aeroelastic instab...
In the 21st century, researchers have been showing keen interest in the areas of wireless networking...
The cut-in wind speed and the power output are the two main concerns of a galloping energy harvester...