Plucked piezoelectric bimorphs for knee-joint energy harvesting: modelling and experimental validation

dc.contributor.authorPozzi, Michele-
dc.contributor.authorZhu, Meiling-
dc.date.accessioned2011-09-29T17:11:13Z
dc.date.available2011-09-29T17:11:13Z
dc.date.issued2011-05-31T00:00:00Z-
dc.description.abstractThe modern drive towards mobility and wireless devices is motivating intensive research in energy harvesting technologies. To reduce the battery burden on people, we propose the adoption of a frequency up-conversion strategy for a new piezoelectric wearable energy harvester. Frequency up-conversion increases efficiency because the piezoelectric devices are permitted to vibrate at resonance even if the input excitation occurs at much lower frequency. Mechanical plucking-based frequency up-conversion is obtained by deflecting the piezoelectric bimorph via a plectrum, then rapidly releasing it so that it can vibrate unhindered; during the following oscillatory cycles, part of the mechanical energy is converted into electrical energy. In order to guide the design of such a harvester, we have modelled with finite element methods the response and power generation of a piezoelectric bimorph while it is plucked. The model permits the analysis of the effects of the speed of deflection as well as the prediction of the energy produced and its dependence on the electrical load. An experimental rig has been set up to observe the response of the bimorph in the harvester. A PZT-5H bimorph was used for the experiments. Measurements of tip velocity, voltage output and energy dissipated across a resistor are reported. Comparisons of the experimental results with the model predictions are very successful and prove the validity of the model.en_UK
dc.identifier.issn0964-1726-
dc.identifier.urihttp://dx.doi.org/10.1088/0964-1726/20/5/055007-
dc.identifier.urihttp://dspace.lib.cranfield.ac.uk/handle/1826/5570
dc.language.isoen_UK-
dc.publisherInstitute of Physicsen_UK
dc.subjectvibrationen_UK
dc.titlePlucked piezoelectric bimorphs for knee-joint energy harvesting: modelling and experimental validationen_UK
dc.typeArticle-

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