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Broadband Piezoelectric Energy Harvester with Adaptive Frequency Tuning

Engineering & Physical Sciences
Electronics & Photonics
Semiconductors, Circuits, & Electronic Components
Energy, Earth, & Environmental
Energy & Fuels
College
College of Engineering (COE)
Researchers
Guan, Yuqin
D'Souza, Kiran
Licensing Manager
Zinn, Ryan
614-292-5212
zinn.7@osu.edu

T2024-352

The Need
Many vibration-based energy harvesting systems are limited by narrow operational frequency bands, making them inefficient for environments where excitation frequencies drift—such as in bridges, machinery, or vehicles. Current solutions often sacrifice energy density to broaden bandwidth. A more efficient, self-tuning piezoelectric energy harvester that maintains high energy output across a wide frequency range would enable more reliable and self-sustained sensor systems in dynamic environments.

The Technology
This novel energy harvesting system integrates a piezoelectric cantilever beam with a piecewise-linear (PWL) stopper and a simple feedback control algorithm. The system automatically adjusts the gap between the beam and stopper using a microcontroller-driven actuator based on real-time voltage feedback. This dynamic control modifies the beam’s resonant frequency to match shifting excitation conditions, improving energy output across a broader frequency spectrum. Experimental validation demonstrates a 37% performance improvement over linear systems and robust operation during rapid frequency shifts.

Commercial Applications
• Structural health monitoring in bridges and civil infrastructure
• Powering wireless sensor networks in industrial machinery
• Energy harvesting in transportation systems (e.g., railways, automotive)
• Wearable or implantable biomedical devices
• Remote environmental monitoring stations

Benefits/Advantages
• Broadband performance
• Low-power control
• Compact and modular design
• Enhanced output
• Scalable and customizable

PCT Patent Application Filed