@inproceedings{ad69b7fb40074acab237f72939ac92e0,
title = "A Wave Energy Harvester with Vertical Pendulum and Mag-Boost Mechanism",
abstract = "This paper presents an ultra-low-frequency and high-power wave energy harvester (WEH). It utilizes a vertical pendulum structure to achieve motion response to ultra-low-frequency wave excitation and then converts the mechanical energy of the pendulum into high-frequency and high-power electrical energy output through the MagBoost Mechanism. The design of WEH ensures stable output even under excitation conditions below 1 Hz. At the excitation frequency of 1.4 Hz and resistance load of 20 ω, the maximum power output can reach 1.16 W with a power density of 0.54 mWcm3. The high energy density allows stable power supplementation for ocean observation buoy within a limited volume, thereby enabling long-Term, unattended operation of the buoy in remote offshore areas.",
keywords = "energy harvesting, Mag-Boost mechanism, self-powered, Wave energy",
author = "Tianyi Tang and Yunfei Li and Heng Zhao and Lining Sun and Huicong Liu",
note = "Publisher Copyright: {\textcopyright} 2024 IEEE.; 23rd IEEE International Conference on Micro and Miniature Power Systems, Self-Powered Sensors and Energy Autonomous Devices, PowerMEMS 2024 ; Conference date: 18-11-2024 Through 21-11-2024",
year = "2024",
doi = "10.1109/PowerMEMS63147.2024.10814434",
language = "英语",
series = "2024 IEEE 23rd International Conference on Micro and Miniature Power Systems, Self-Powered Sensors and Energy Autonomous Devices, PowerMEMS 2024",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "151--154",
booktitle = "2024 IEEE 23rd International Conference on Micro and Miniature Power Systems, Self-Powered Sensors and Energy Autonomous Devices, PowerMEMS 2024",
address = "美国",
}