Energy Harvesting From the Vibration and Rotation of Host Systems Using Piezoelectric Devices

C. Cooley
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Abstract

This work analyzes the energy harvested by a piezoelectric vibration energy harvester that is attached to a rotating host system, like an automotive tire, that has superposed translational vibration. The device experiences once-per-revolution dynamic excitation from rotation and, because the host system translates, additional speed-dependent excitation from input vibration. The device consists of a piezoelectric beam with a proof mass that displaces tangentially in operation so that large, troublesome centripetal accelerations can be avoided. The dynamic response and power harvested are determined in closed-form. The speed-dependent properties of the response components are determined. With excitation from rotation and vibration, the device harvests substantially more power than if the system were excited by either rotation or vibration alone. Numerical results are shown for an example device over a wide range of rotation speeds. The device can harvest 185 mW of power at its maximum when the rotation speed is near 1,000 rpm. The device provides more than 30 mW of power for speeds between 817 rpm and 1,195 rpm. Harvesting energy from vibration naturally leads to wider speed bandwidths where large amounts of power are available.
利用压电装置从主系统的振动和旋转中收集能量
这项工作分析了压电振动能量收集器收集的能量,该能量收集器连接到旋转主机系统上,就像汽车轮胎一样,具有叠加的平移振动。该装置从旋转中经历每转一次的动态激励,并且由于主机系统的转换,从输入振动中获得额外的速度相关激励。该装置由一个具有证明质量的压电梁组成,该梁在运行中切向位移,从而可以避免大而麻烦的向心加速度。动态响应和收获功率以封闭形式确定。确定响应分量的速度相关属性。在旋转和振动的激励下,该装置比仅由旋转或振动激励的系统获得更多的功率。数值结果显示了一个例子装置在很宽的转速范围内。当转速接近1000转/分时,该装置最大可收获185兆瓦的功率。该设备提供超过30兆瓦的功率,速度在817转/分钟到1195转/分钟之间。从振动中收集能量自然会导致更宽的速度带宽,其中大量的电力是可用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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