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Updated: Jun 10, 2026

A Polymer-based Piezoelectric Vibration Energy Harvester with a 3D Meshed-Core Structure
Published on: February 20, 2019
Piezoelectric vibration energy harvesting to power a wearable nerve stimulator for tremor suppression
Chaymae Amri1, Abdelilah Jilbab1, My Hachem El Yousfi Alaoui1
1Department of Electrical, ElectronicSystems, Sensors and Nanobiotechnologies (E2SN), National Higher School of Arts and Crafts (ENSAM), Mohammed V University in Rabat, Rabat, Morocco.
Abstract:
A self-powered wearable nerve stimulator for tremor suppression is proposed using piezoelectric vibration energy harvesting. A cantilever harvester with tip mass was mechanically tuned to match the physiological tremor band (6-12 Hz). The electrical architecture integrates a rectifier, boost converter, and dual supercapacitors for stable power delivery. Finite-element modeling showed strong agreement with experimental measurements, validating the design approach. The optimized configuration demonstrated viable energy capture at clinically relevant frequencies, confirming the feasibility of a fully autonomous anti-tremor wristband. Further improvements through piezoelectric arrays and refined power-management stages are identified as clear paths toward enhanced energy autonomy.
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