Wu Qinghe, Gao Shiqiao, Jin Lei, Zhang Xiyang, Yin Zuozong, Wang Caifeng
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.
Beijing Institute of Remote Sensing Equipment, Beijing 100854, China.
Sensors (Basel). 2021 Nov 1;21(21):7285. doi: 10.3390/s21217285.
In this paper, a novel tuning fork structure for self-frequency up-conversion is proposed. The structure has an in-phase vibration mode and an anti-phase vibration mode. The in-phase vibration mode is used to sense the environment vibration, and the anti-phase vibration mode is used for energy conversion and power generation. The low-frequency energy collection and the high-frequency energy conversion can be achieved simultaneously. Theoretical and experimental results show that the tuning fork frequency up-conversion energy harvester has excellent performance. This structure provides the energy harvester with excellent output power in a low-frequency vibration environment. At the resonant frequency of 7.3 Hz under 0.7 g acceleration, the peak voltage is 41.8 V and the peak power is 8.74 mW. The tuning fork frequency up-conversion energy harvester causes the humidity sensor to work stably. The structure has the potential to power wireless sensor nodes or to be used as a small portable vibration storage device, especially suitable for the monitoring of the environment related to human movement.
本文提出了一种用于自频率上转换的新型音叉结构。该结构具有同相振动模式和反相振动模式。同相振动模式用于感知环境振动,反相振动模式用于能量转换和发电。可以同时实现低频能量收集和高频能量转换。理论和实验结果表明,音叉频率上转换能量采集器具有优异的性能。这种结构为能量采集器在低频振动环境中提供了优异的输出功率。在0.7g加速度下7.3Hz的共振频率处,峰值电压为41.8V,峰值功率为8.74mW。音叉频率上转换能量采集器使湿度传感器稳定工作。该结构有潜力为无线传感器节点供电或用作小型便携式振动存储设备,特别适用于与人体运动相关的环境监测。