4.5 Article

Coupled piezo-multiple electromagnetic energy harvesting

期刊

MECHANICS OF ADVANCED MATERIALS AND STRUCTURES
卷 30, 期 23, 页码 4882-4901

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15376494.2022.2107742

关键词

Energy harvesting; piezoelectric; electromagnetic; hybrid transduction; finite element modeling

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This study investigates the performance of a hybrid energy harvester equipped with multiple electromagnetic generators under harmonic and random motions. A reduced order model is developed for numerical analysis and experimental validation. The results demonstrate that the hybrid harvester with two electromagnetic subsystems can generate sustained and significant power output over a wide frequency range. Parametric studies further reveal the harvester's capability of producing high voltage and high current simultaneously. Additionally, a finite element model is employed to identify the optimal position and number of electromagnetic subsystems for enhanced power.
This work studies the performance of a hybrid energy harvester with multiple electromagnetic generators under harmonic and random motions. A reduced order model is derived for numerical analysis. Experiments are conducted to validate the numerical results. Results show that the hybrid harvester with two electromagnetic subsystems can generate sufficient magnitude of power sustained over a large frequency region. Parametric studies are carried out and reported. The proposed harvester is capable of producing high voltage and high current simultaneously. Finally, a finite element model is developed for further analysis to find the optimal position and number of electromagnetic subsystems for enhanced power.

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