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A Piezo-Electromagnetic Coupling Multi-Directional Vibration Energy Harvester Based on Frequency Up-Conversion Technique

机译:基于频率上变频技术的压电电磁耦合多向振动能量采集器

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摘要

Harvesting vibration energy to power wearable devices has become a hot research topic, while the output power and conversion efficiency of a vibration energy harvester with a single electromechanical conversion mechanism is low and the working frequency band and load range are narrow. In this paper, a new structure of piezoelectric electromagnetic coupling up-conversion multi-directional vibration energy harvester is proposed. Four piezoelectric electromagnetic coupling cantilever beams are installed on the axis of the base along the circumferential direction. Piezoelectric plates are set on the surface of each cantilever beam to harvest energy. The permanent magnet on the beam is placed on the free end of the cantilever beam as a mass block. Four coils for collecting energy are arranged on the base under the permanent magnets on the cantilever beams. A bearing is installed on the central shaft of the base and a rotating mass block is arranged on the outer ring of the bearing. Four permanent magnets are arranged on the rotating mass block and their positions correspond to the permanent magnets on the cantilever beams. The piezoelectric cantilever is induced to vibrate at its natural frequency by the interaction between the magnet on cantilever and the magnets on the rotating mass block. It can collect the nonlinear impact vibration energy of low-frequency motion to meet the energy harvesting of human motion.
机译:将振动能量收集到功率可穿戴设备中已经成为研究的热点,而具有单一机电转换机构的振动能量收集器的输出功率和转换效率较低,并且工作频带和负载范围较窄。本文提出了一种新型的压电电磁耦合上变频多向振动能量采集器结构。四个压电电磁耦合悬臂梁沿圆周方向安装在基座的轴上。压电板设置在每个悬臂梁的表面以收集能量。梁上的永磁体作为质量块放置在悬臂梁的自由端。底座上的悬臂梁上的永久磁铁下方有四个用于收集能量的线圈。轴承安装在基座的中心轴上,旋转质量块布置在轴承的外圈上。四个永久磁铁布置在旋转质量块上,它们的位置与悬臂梁上的永久磁铁相对应。通过悬臂上的磁体和旋转质量块上的磁体之间的相互作用,压电悬臂以其固有频率振动。它可以收集低频运动的非线性冲击振动能量,以满足人体运动的能量收集需求。

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