Publication | Closed Access
Analytical model for nonlinear piezoelectric energy harvesting devices
32
Citations
17
References
2014
Year
Electrical EngineeringEnergy HarvestingEngineeringHarvester Design ProcessEnergy ConversionPiezoelectric NanogeneratorsMechatronicsMechanical SystemsPiezoelectric Energy HarvesterNonlinear Vibration ControlPiezoelectric MaterialsPiezoelectricityPiezoelectric MaterialVibration ControlAnalytical Model
In this work we propose analytical expressions for the jump-up and jump-down point of a nonlinear piezoelectric energy harvester. In addition, analytical expressions for the maximum power output at optimal resistive load and the 3 dB-bandwidth are derived. So far, only numerical models have been used to describe the physics of a piezoelectric energy harvester. However, this approach is not suitable to quickly evaluate different geometrical designs or piezoelectric materials in the harvester design process. In addition, the analytical expressions could be used to predict the jump-frequencies of a harvester during operation. In combination with a tuning mechanism, this would allow the design of an efficient control algorithm to ensure that the harvester is always working on the oscillatorʼs high energy attractor.
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