能量收集
电气工程
功率(物理)
电势能
振动
电磁线圈
电容器
汽车工程
激发
工程类
能量(信号处理)
发电
计算机科学
电力
磁铁
飞轮
高效能源利用
发电机
可再生能源
转子(电动)
电动机
机械能
电容
微电子机械系统
动能
旋转(数学)
电力系统
作者
Yongxin Li,Xiaokai Li,Jianwu Wang,Zhengyu Li,Jing Sun,Xin Liu,Huanxi Zheng
标识
DOI:10.1142/s0219455427503561
摘要
The advancement of smart transportation depends on the integration of multiple Micro-Electromechanical Systems (MEMS), with the challenge of ensuring their continuous and reliable power supply remaining urgent. This paper presents a bidirectional compression energy harvester with buffering and self-recovery functions, which utilizes road vibration excitation for power generation. By employing a spring and bevel gear mechanism integrated with a one-way bearing, the harvester converts external irregular excitation into continuous unidirectional rotation of the rotor, subsequently converting rotational kinetic energy into electrical energy via electromagnetic induction. The dynamic and power generation models of the harvester are developed and validated through prototype testing. With the use of a highly efficient energy harvesting circuit designed for coil power generation, the harvester successfully charges capacitors of 0.5, 1, 2, and 4 F to 5 V within time intervals of 15, 26, 71, and 149 s, respectively, under excitation conditions of 1 s period, 30 mm amplitude, and MVIII magnet arrangement. Under a single excitation from an adult, the harvester achieves an average output power of approximately 3.92 W and generates 13.51 J of electrical energy. These results demonstrate the harvester’s excellent energy harvesting performance. Its potential for powering MEMS is indicated, providing a promising solution for continuous, real-time monitoring in smart transportation systems.
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