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Compact passively self-tuning energy harvesting for rotating applications

机译:紧凑的被动自调谐能量收集,适用于旋转应用

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This paper presents a compact, passive, self-tuning energy harvester for rotating applications. The harvester rotates in the vertical plane and is comprised of two beams: a relatively rigid piezoelectric generating beam and a narrow, flexible driving beam with a tip mass mounted at the end. The mass impacts the generating beam repeatedly under the influence of gravity to drive generation. Centrifugal force from the rotation modifies the resonant frequency of the flexible driving beam and the frequency response of the harvester. An analytical model that captures the harvester system's resonant frequency as a function of rotational speed is used to guide the detailed design. With an optimized design, the resonant frequency of the harvester substantially matches the frequency of the rotation over a wide frequency range from 4 to 16.2Hz. A prototype of the passive self-tuning energy harvester using a lead zirconate titanate generating beam achieved a power density of 30.8νWcm ~(-3) and a more than 11Hz bandwidth, which is much larger than the 0.8Hz bandwidth calculated semi-empirically for a similar but untuned harvester. Passive tuning was also demonstrated using the more robust and reliable but less efficient polymer polyvinylidene fluoride for the generating beam.
机译:本文提出了一种用于旋转应用的紧凑型,被动式,自调谐式能量收集器。收割机在垂直平面上旋转,由两根梁组成:相对较硬的压电生成梁和狭窄而灵活的驱动梁,末端装有质量头。质量块在重力的影响下反复撞击生成束以驱动生成。旋转产生的离心力会改变柔性驱动梁的共振频率和收割机的频率响应。捕获捕获系统的共振频率作为转速函数的分析模型可用于指导详细设计。通过优化设计,收割机的共振频率在4至16.2Hz的宽频率范围内基本与旋转频率匹配。使用钛酸锆钛酸铅产生束的无源自调谐能量采集器的原型实现了30.8νWcm〜(-3)的功率密度和超过11Hz的带宽,远大于半经验计算的0.8Hz带宽。一个类似但未调整的收割机。还使用了更坚固,可靠,但效率较低的聚合物聚偏二氟乙烯作为发束来演示无源调谐。

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