Autonomous self-powered wireless sensor devices are inevitable future technology that will potentially become ubiquitous in many sectors such as industry, intelligent infrastructure and biomedical devices. This has spurred a great attention from researchers to develop self-sustained power harvesting devices. For this paper, we present a new numerical technique for modelling the MEMS power harvesters using parametric design optimisation and physical properties for various piezoelectric materials. This technique enables the prediction of optimal power harvesting responses that can be used to identify the performance of piezoelectric materials and particular piezoelectric geometry where this technique can alleviate tedious analytical methods f...
AbstractEnergy harvesting from environmental vibrations attracts increasing interest in wireless sen...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2005.In...
Piezoelectric materials are excellent transducers for converting mechanical energy from the environm...
The attached document may provide the author's accepted version of a published work. See Citati...
Emerging micro-power harvester research using smart material components shows viable self-powered de...
A new electromechanical finite element modelling of a vibration power harvester and its validation w...
As wireless sensor networks continue to grow in size and scope, the limited life span of batteries p...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
This paper focuses on the primary development of novel numerical and analytical techniques of the mo...
One of the challenges of miniature electronic system such as those work as a part of a wider wirele...
A resonant vibration energy harvester typically comprises of a clamped anchor and a vibrating shuttl...
The purpose of this work is to present recent advances in modeling and design of piezoelectric energ...
Piezoelectric harvesters use the actuation potential of the piezoelectric material to transform mech...
Vibration energy harvesting has been progressively developed in the advancement of technology and wi...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
AbstractEnergy harvesting from environmental vibrations attracts increasing interest in wireless sen...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2005.In...
Piezoelectric materials are excellent transducers for converting mechanical energy from the environm...
The attached document may provide the author's accepted version of a published work. See Citati...
Emerging micro-power harvester research using smart material components shows viable self-powered de...
A new electromechanical finite element modelling of a vibration power harvester and its validation w...
As wireless sensor networks continue to grow in size and scope, the limited life span of batteries p...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
This paper focuses on the primary development of novel numerical and analytical techniques of the mo...
One of the challenges of miniature electronic system such as those work as a part of a wider wirele...
A resonant vibration energy harvester typically comprises of a clamped anchor and a vibrating shuttl...
The purpose of this work is to present recent advances in modeling and design of piezoelectric energ...
Piezoelectric harvesters use the actuation potential of the piezoelectric material to transform mech...
Vibration energy harvesting has been progressively developed in the advancement of technology and wi...
This paper proposes a versatile model for optimizing the performance of a rectangular cantilever bea...
AbstractEnergy harvesting from environmental vibrations attracts increasing interest in wireless sen...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2005.In...
Piezoelectric materials are excellent transducers for converting mechanical energy from the environm...