Due to the increasing demand for harvesting energy from environmental vibration, for use in self-powered electronic applications, cantilever-based vibration energy harvesting has attracted great interest from various parties and become one of the most common approaches to convert redundant mechanical energy into electrical energy. As the output voltage produces from a piezoelectric material depends greatly on the geometric shape and the size of the beam, there is a need to model and compare the performance of cantilever beams of differing geometries. This paper presents the study of strain distribution in various shapes of cantilever beams, including a convex and concave edge profile elliptical beams that have been overseen in most of the p...
Energy harvesters that extract energy from vibrating system with the help of piezoelectric cantileve...
Energy harvesting from the human body is considered as an effective solution for powering biomedical...
Abstract: This paper reports the comparison of different beam shapes of piezoelectric vibration ener...
Piezoelectric materials are excellent transducers for converting mechanical energy from the environm...
Piezoelectric materials are excellent transducers in converting vibrational energy into electrical e...
Much interest in energy harvesters has been focused on maintaining their conversion efficiency durin...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
Piezoelectric energy harvesting is a way of converting waste mechanical energy into usable electrica...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
Electromechanical modelling efforts in the research field of vibration-based energy harvesting have ...
Piezoelectric cantilevered beams have been used as a MEMS energy harvester for the last decade becau...
Energy harvesting technology has the ability to create autonomous, self-powered systems which do not...
Results of the numerical and experimental investi-gations of the piezoelectric rectangular cantileve...
Energy Harvesting (EH) is the science that studies the conversion of energy dispersed in environment...
Vibrational energy harvesting is a growing field in research area to fulfil need of power requiremen...
Energy harvesters that extract energy from vibrating system with the help of piezoelectric cantileve...
Energy harvesting from the human body is considered as an effective solution for powering biomedical...
Abstract: This paper reports the comparison of different beam shapes of piezoelectric vibration ener...
Piezoelectric materials are excellent transducers for converting mechanical energy from the environm...
Piezoelectric materials are excellent transducers in converting vibrational energy into electrical e...
Much interest in energy harvesters has been focused on maintaining their conversion efficiency durin...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
Piezoelectric energy harvesting is a way of converting waste mechanical energy into usable electrica...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
Electromechanical modelling efforts in the research field of vibration-based energy harvesting have ...
Piezoelectric cantilevered beams have been used as a MEMS energy harvester for the last decade becau...
Energy harvesting technology has the ability to create autonomous, self-powered systems which do not...
Results of the numerical and experimental investi-gations of the piezoelectric rectangular cantileve...
Energy Harvesting (EH) is the science that studies the conversion of energy dispersed in environment...
Vibrational energy harvesting is a growing field in research area to fulfil need of power requiremen...
Energy harvesters that extract energy from vibrating system with the help of piezoelectric cantileve...
Energy harvesting from the human body is considered as an effective solution for powering biomedical...
Abstract: This paper reports the comparison of different beam shapes of piezoelectric vibration ener...