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首页> 外文期刊>Journal of Vibration and Acoustics >Modeling and Analysis of a Piezoelectric Energy Scavenger for Rotary Motion Applications
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Modeling and Analysis of a Piezoelectric Energy Scavenger for Rotary Motion Applications

机译:旋转运动应用中压电能量清除剂的建模与分析

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This paper presents modeling and analysis of a piezoelectric mounted rotary flexible beam that can be used as an energy scavenger for rotary motion applications. The energy harvester system consists of a piezoelectric bimorph cantilever beam with a tip mass mounted on a rotating hub. Assuming Euler-Bernoulli beam equations and considering the effect of a piezoelectric transducer, equations of motion are derived using the La-grangian approach followed by relationships describing the harvested power. The equations provide a quantitative description of how the hub acceleration and gravity due to the tip mass contribute power to the energy harvester. In particular, expressions describing optimum load resistance and the maximum power that can be harvested using the proposed system are derived. Numerical simulations are performed to show the performance of the harvester by obtaining tip velocities and electrical output voltages for a range of electrical load resistances and rotational speeds. It is shown that by proper sizing and parameter selection, the proposed system can supply enough energy for operating wireless sensors in rotating mechanisms such as tires and turbines.
机译:本文介绍了压电安装的旋转柔性梁的建模和分析,该梁可以用作旋转运动应用中的能量清除剂。能量收集器系统由压电双压电晶片悬臂梁组成,其尖端质量安装在旋转的轮毂上。假设Euler-Bernoulli束方程,并考虑压电换能器的影响,则使用拉格朗日方法推导运动方程,然后用关系式描述收获的功率。这些方程式提供了对由于尖端质量而导致的轮毂加速度和重力如何为能量采集器提供动力的定量描述。尤其是,得出了描述使用建议的系统可以获取的最佳负载电阻和最大功率的表达式。通过获得一定范围的电负载电阻和转速下的尖端速度和输出电压,进行了数值模拟以显示收割机的性能。结果表明,通过适当的大小调整和参数选择,所提出的系统可以提供足够的能量来操作旋转机构(例如轮胎和涡轮机)中的无线传感器。

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