Piezoelectric materials are excellent transducers for converting mechanical energy from the environment for use as electrical energy. The conversion of mechanical energy to electrical energy is a key component in the development of self-powered devices, especially enabling technology for wireless sensor networks. This paper proposes an alternative method for predicting the power output of a bimorph cantilever beam using a finite-element method for both static and dynamic frequency analyses. A novel approach is presented for optimising the cantilever beam, by which the power density is maximised and the structural volume is minimised simultaneously. A two-stage optimisation is performed, i.e., a shape optimisation and then a “topology” hole ...
Autonomous self-powered wireless sensor devices are inevitable future technology that will potential...
The concept of “energy harvesting” is to design smart systems to capture the ambient energy and to c...
In sensors and automation field, wireless sensor nodes are usually powered with batteries. This impl...
Piezoelectric materials are excellent transducers for converting mechanical energy from the environm...
Piezoelectric materials are excellent transducers in converting vibrational energy into electrical e...
Due to the increasing demand for harvesting energy from environmental vibration, for use in self-pow...
As wireless sensor networks continue to grow in size and scope, the limited life span of batteries p...
The main objective of this paper is to optimise energy harvesting design of piezoelectric and magnet...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
Piezoelectric energy harvesting is gaining huge research interest since it provides high power densi...
Due to developments in additive manufacturing, the production of piezoelectric materials with comple...
Energy harvesters that extract energy from vibrating system with the help of piezoelectric cantileve...
Piezoelectric energy harvesting is a way of converting waste mechanical energy into usable electrica...
In this thesis, the energy producing capabilities and efficiency of Piezoelectric materials for ambi...
Piezoelectric energy harvesting using cantilever-type structures has been extensively investigated d...
Autonomous self-powered wireless sensor devices are inevitable future technology that will potential...
The concept of “energy harvesting” is to design smart systems to capture the ambient energy and to c...
In sensors and automation field, wireless sensor nodes are usually powered with batteries. This impl...
Piezoelectric materials are excellent transducers for converting mechanical energy from the environm...
Piezoelectric materials are excellent transducers in converting vibrational energy into electrical e...
Due to the increasing demand for harvesting energy from environmental vibration, for use in self-pow...
As wireless sensor networks continue to grow in size and scope, the limited life span of batteries p...
The main objective of this paper is to optimise energy harvesting design of piezoelectric and magnet...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
Piezoelectric energy harvesting is gaining huge research interest since it provides high power densi...
Due to developments in additive manufacturing, the production of piezoelectric materials with comple...
Energy harvesters that extract energy from vibrating system with the help of piezoelectric cantileve...
Piezoelectric energy harvesting is a way of converting waste mechanical energy into usable electrica...
In this thesis, the energy producing capabilities and efficiency of Piezoelectric materials for ambi...
Piezoelectric energy harvesting using cantilever-type structures has been extensively investigated d...
Autonomous self-powered wireless sensor devices are inevitable future technology that will potential...
The concept of “energy harvesting” is to design smart systems to capture the ambient energy and to c...
In sensors and automation field, wireless sensor nodes are usually powered with batteries. This impl...