Qu Guohao, Xia Hui, Liang Quanwei, Liu Yunping, Ming Shilin, Zhao Junke, Xia Yushu, Wu Jianbo
School of Mechanical Engineering, Sichuan University, Chengdu 610065, China.
Dongfang Electric Group Dongfang Electric Motor Co., Ltd., Deyang 618000, China.
Micromachines (Basel). 2024 Aug 30;15(9):1109. doi: 10.3390/mi15091109.
The continuous worsening of the natural surroundings requires accelerating the exploration of green energy technology. Utilising ambient vibration to power electronic equipment constitutes an important measure to address the power crisis. Vibration power is widely dispersed in the surroundings, such as mechanical vibration, acoustic vibration, wind vibration, and water wave vibration. Collecting vibration energy is one of the research hotspots in the field of energy. Meanwhile, it is also an important way to solve the energy crisis. This paper illustrates the working principles and recent research progress of five known methods of vibrational energy harvesting, namely, electromagnetic, piezoelectric, friction electric, electrostatic, and magnetostrictive vibrational energy harvesters. The strengths and weaknesses of each method are summarised. At the end of the article, the future trends of micro-nano vibrational energy collectors are envisioned.
自然环境的持续恶化要求加快绿色能源技术的探索。利用环境振动为电子设备供电是解决电力危机的一项重要措施。振动能量广泛散布于周围环境中,如机械振动、声振动、风振动和水波振动等。收集振动能量是能源领域的研究热点之一。同时,它也是解决能源危机的重要途径。本文阐述了五种已知的振动能量收集方法的工作原理及近期研究进展,这五种方法分别是电磁式、压电式、摩擦电式、静电式和磁致伸缩式振动能量收集器。总结了每种方法的优缺点。文章结尾对微纳振动能量收集器的未来发展趋势进行了展望。