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可穿戴球冲击压电式多转换器,用于从人体运动中获取低频能量。

Wearable Ball-Impact Piezoelectric Multi-Converters for Low-Frequency Energy Harvesting from Human Motion.

机构信息

Department of Information Engineering, University of Brescia, 25123 Brescia, Italy.

Department of Civil and Environmental Engineering, Politecnico di Milano, 20133 Milano, Italy.

出版信息

Sensors (Basel). 2022 Jan 20;22(3):772. doi: 10.3390/s22030772.

Abstract

Multi-converter piezoelectric harvesters based on mono-axial and bi-axial configurations are proposed. The harvesters exploit two and four piezoelectric converters (PCs) and adopt an impinging spherical steel ball to harvest electrical energy from human motion. When the harvester undergoes a shake, a tilt, or a combination of the two, the ball hits one PC, inducing an impact-based frequency-up conversion. Prototypes of the harvesters have been designed, fabricated, fastened to the wrist of a person by means of a wristband and watchband, and experimentally tested for different motion levels. The PCs of the harvesters have been fed to passive diode-based voltage-doubler rectifiers connected in parallel to a storage capacitor, = 220 nF. By employing the mono-axial harvester, after 8.5 s of consecutive impacts induced by rotations of the wrist, a voltage (t) of 40.2 V across the capacitor was obtained, which corresponded to a stored energy of 178 μJ. By employing the bi-axial harvester, the peak instantaneous power provided by the PCs to an optimal resistive load was 1.58 mW, with an average power of 9.65 μW over 0.7 s. The proposed harvesters are suitable to scavenge electrical energy from low-frequency nonperiodical mechanical movements, such as human motion.

摘要

基于单轴和双轴配置的多转换器压电式 Harvest 器被提出。这些 Harvest 器利用两个和四个压电转换器 (PC),并采用撞击的球形钢球来从人体运动中获取电能。当 Harvest 器经历晃动、倾斜或两者的组合时,球会撞击一个 PC,从而产生基于冲击的频率上转换。Harvester 的原型已经被设计、制造,并通过腕带和表带固定在人的手腕上,然后针对不同的运动水平进行了实验测试。Harvester 的 PC 被馈送到并联连接到存储电容器( = 220 nF)的无源二极管式电压倍增器。通过使用单轴 Harvest 器,在手腕旋转连续产生 8.5 秒的冲击之后,在电容器上获得了 40.2 V 的电压(t),这对应于 178 μJ 的存储能量。通过使用双轴 Harvest 器,PC 向最佳电阻负载提供的峰值瞬时功率为 1.58 mW,在 0.7 s 内的平均功率为 9.65 μW。所提出的 Harvest 器适用于从低频非周期性机械运动(例如人体运动)中获取电能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d44d/8839351/e92319f8c110/sensors-22-00772-g001.jpg

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