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Podder, P; Constantinou, P; Mallick, D; Roy, S, E-mail: saibal.roy@tyndall.ie2015
AbstractAbstract
[en] This work reports the development of a MEMS bistable electromagnetic vibrational energy harvester (EMVEH) consisting of a silicon-on-insulator (SOI) spiral spring, double layer micro-coils and miniaturized NdFeB magnets. Furthermore, with respect to the spiral silicon spring based VEH, four different square micro-coil topologies with different copper track width and number of turns have been investigated to determine the optimal coil dimensions. The micro-generator with the optimal micro-coil generated 0.68 micro-watt load power over an optimum resistive load at 0.1g acceleration, leading to normalized power density of 3.5 kg.s/m"3. At higher accelerations the load power increased, and the vibrating magnet collides with the planar micro-coil producing wider bandwidth. Simulation results show that a substantially wider bandwidth could be achieved in the same device by introducing bistable nonlinearity through a repulsive configuration between the moving and fixed permanent magnets. (paper)
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Source
PowerMEMS 2015: 15. international conference on micro and nanotechnology for power generation and energy conversion applications; Boston, MA (United States); 1-4 Dec 2015; Available from http://dx.doi.org/10.1088/1742-6596/660/1/012124; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Journal of Physics. Conference Series (Online); ISSN 1742-6596;
; v. 660(1); [5 p.]

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