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Experimental Implementation of a Cantilevered Piezoelectric Energy Harvester with a Dynamic Magnifier

机译:具有动态放大镜的悬臂式压电能量采集器的实验实现

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Conventional energy harvester consists of a cantilevered composite piezoelectric beam which has a proof mass at its free end while its fixed end is mounted on a vibrating base structure. The resulting relative motion between the proof mass and the base structure produces a mechanical strain in the piezoelectric elements which is converted into electrical power by virtue of the direct piezoelectric effect. In this paper, the harvester is provided with a dynamic magnifier consisting of a spring-mass system which is placed between the fixed end of the piezoelectric beam and the vibrating base structure. The main function of the dynamic magnifier, as the name implies, is to magnify the strain experienced by the piezoelectric elements in order to amplify the electrical power output of the harvester. With proper selection of the design parameters of the magnifier, the harvested power can be significantly enhanced and the effective bandwidth of the harvester can be improved. The theoretical performance of this class of Cantilevered Piezoelectric Energy Harvesters with Dynamic Magnifier {CPEHDM) is developed using ANSYS finite element analysis. The predictions of the model are validated experimentally and comparisons are presented to illustrate the merits of the CPEHDM in comparison with the conventional piezoelectric energy harvesters {CPEH). The obtained results demonstrate the feasibility of the CPEHDM as a simple and effective means for enhancing the magnitude and spectral characteristics of CPEH.
机译:常规的能量收集器由悬臂式复合压电梁组成,该复合压电梁的自由端具有检测质量,而其固定端则安装在振动的基础结构上。检验质量块和基础结构之间产生的相对运动在压电元件中产生机械应变,该机械应变通过直接压电效应转换为电能。在本文中,收割机配备了一个动态放大器,该放大器由弹簧-质量系统组成,该系统置于压电梁的固定端和振动基座结构之间。顾名思义,动态放大器的主要功能是放大压电元件承受的应变,以放大采集器的电功率输出。通过正确选择放大镜的设计参数,可以显着提高采集功率,并可以提高采集器的有效带宽。使用ANSYS有限元分析开发了这种带有动态放大镜的悬臂式压电能量采集器(CPEHDM)的理论性能。该模型的预测已通过实验验证,并进行了比较以说明CPEHDM与常规压电能量收集器(CPEH)相比的优点。所得结果证明了CPEHDM作为增强CPEH的幅度和光谱特性的简单有效手段的可行性。

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