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2025 | OriginalPaper | Chapter

Rotational Nonlinear Energy Harvesting via an Orthogonal Dual Beam

Authors : Long Zhao, Zeqi Lu, Hailing Fu, Hu Ding, Liqun Chen

Published in: The 5th International Conference on Vibration and Energy Harvesting Applications (VEH 2024)

Publisher: Springer Nature Singapore

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Abstract

The proliferation of low-power sensors in urban environments has highlighted the need for reliable power sources, with rotational motion emerging as a promising energy harvest. This chapter introduces an innovative dual-beam energy harvester designed to capture energy from rotational sources, such as vehicle wheels, through nonlinear magnetic interactions. The study delves into the design and modeling of the harvester, employing the harmonic balance method to solve electromechanical coupling equations and validate the results through numerical simulations. Key findings include the significant impact of beam length, magnet spacing, and load resistance on the harvester's performance, with strategic adjustments broadening the operational frequency range and enhancing energy output. Experimental studies confirm the analytical predictions, demonstrating the harvester's potential to provide continuous power to monitoring sensors in urban landscapes. The chapter also explores the complex dynamics of the dual-beam system, highlighting the interplay between rotational speed, resonance frequencies, and energy harvesting efficiency. By addressing the challenges of low-frequency energy harvesting, this research paves the way for more sustainable and reliable sensor-based systems in urban environments.

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Metadata
Title
Rotational Nonlinear Energy Harvesting via an Orthogonal Dual Beam
Authors
Long Zhao
Zeqi Lu
Hailing Fu
Hu Ding
Liqun Chen
Copyright Year
2025
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-96-1191-1_4

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