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Updated: Feb 10, 2026

A Polymer-based Piezoelectric Vibration Energy Harvester with a 3D Meshed-Core Structure
Published on: February 20, 2019
Effects of Proof Mass Geometry on Piezoelectric Vibration Energy Harvesters
Abdul Hafiz Alameh1, Mathieu Gratuze2, Mohannad Y Elsayed3
1Department of Electrical Engineering, École de Technologie Supérieure, Montréal, QC H3C 1K3, Canada. abdul-hafiz.alameh.1@ens.etsmtl.ca.
Abstract:
Piezoelectric energy harvesters have proven to have the potential to be a power source in a wide range of applications. As the harvester dimensions scale down, the resonance frequencies of these devices increase drastically. Proof masses are essential in micro-scale devices in order to decrease the resonance frequency and increase the strain along the beam to increase the output power. In this work, the effects of proof mass geometry on piezoelectric energy harvesters are studied. Different geometrical dimension ratios have significant impact on the resonance frequency, e.g., beam to mass lengths, and beam to mass widths. A piezoelectric energy harvester has been fabricated and tested operating at a frequency of about 4 kHz within the audible range. The responses of various prototypes were studied, and an optimized T-shaped piezoelectric vibration energy harvester design is presented for improved performance.
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