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Analysis of a Cantilevered Piezoelectric Energy Harvester in Different Orientations for Rotational Motion

机译:旋转运动不同方向的悬臂式压电能量采集器的分析

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摘要

This paper investigates a piezoelectric energy harvester that consists of a piezoelectric cantilever and a tip mass for horizontal rotational motion. Rotational motion results in centrifugal force, which causes the axial load on the beam and alters the resonant frequency of the system. The piezoelectric energy harvester is installed on a rotational hub in three orientations—inward, outward, and tilted configurations—to examine their influence on the performance of the harvester. The theoretical model of the piezoelectric energy harvester is developed to explain the dynamics of the system and experiments are conducted to validate the model. Theoretical and experimental studies are presented with various tilt angles and distances between the harvester and the rotating center. The results show that the installation distance and the tilt angle can be used to adjust the resonant frequency of the system to match the excitation frequency.
机译:本文研究了一种压电能量收集器,该收集器由压电悬臂和用于水平旋转运动的尖端质量组成。旋转运动产生离心力,该离心力引起梁的轴向载荷并改变系统的共振频率。压电能量采集器以三个方向(向内,向外和倾斜的配置)安装在旋转轮毂上,以检查它们对采集器性能的影响。开发了压电能量收集器的理论模型来解释系统的动力学,并进行了实验以验证该模型。在收割机和旋转中心之间的各种倾斜角度和距离的情况下,进行了理论和实验研究。结果表明,安装距离和倾斜角可用于调节系统的谐振频率以匹配激励频率。

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