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Scavenging energy from ultra-low frequency mechanical excitations through a bi-directional hybrid energy harvester

机译:通过双向混合能量收集器从超低频机械激励中清除能量

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A bi-directional hybrid energy harvester (HEH) is presented in this paper to scavenge energy from ultra-low frequency mechanical excitations. The proposed HEH consists of two piezoelectric cantilever beams, a suspended magnet, and a set of coil. Specifically, the two piezoelectric beams work as a conventional piezoelectric energy harvester (PEH), whereas the suspended magnet and the coil constitute an electromagnetic energy harvester (EMEH). The two energy-harvesting units (PEH and EMEH), which are sensitive to excitations coming from different directions, are coupled by the suspended magnet, through which the PEH and EMEH are coherently integrated. The suspended magnet not only induces the coil to generate electricity but also actuates the PEH to work, achieving the simultaneous energy extraction from one excitation through two conversion mechanisms. The dynamic model of the HEH is established. Theoretical simulations and experimental measurements under the sinusoidal excitation indicate that the nonlinear interaction between the PEH and EMEH actuates the two energy-harvesting units to oscillate either chaotically or periodically with large amplitudes, which can improve both the PEH and the EMEH power outputs at ultra-low frequencies, not only expanding the HEH working bandwidth but also making the HEH suitable for ultra-low frequency energy harvesting. Moreover, the hand-shaking test shows that the HEH has a better charging performance than an individual energy-harvesting unit for charging a capacitor. Under the hand-shaking induced excitation, the fabricated HEH prototype can also light up tens of light-emitting diodes (LEDs), demonstrating its potential application for powering some portable electronics.
机译:本文提出了一种双向混合能量收集器(HEH),以清除超低频机械激励中的能量。拟议的HEH由两个压电悬臂梁,一个悬浮磁体和一组线圈组成。具体地,两个压电束用作常规的压电能量收集器(PEH),而悬置的磁体和线圈构成电磁能量收集器(EMEH)。对来自不同方向的激励敏感的两个能量收集单元(PEH和EMEH)通过悬浮磁体耦合在一起,PEH和EMEH通过该磁体相干集成。悬浮的磁铁不仅可以感应线圈发电,还可以驱动PEH运转,从而通过两种转换机制从一种励磁中同时提取能量。建立了HEH的动力学模型。在正弦激励下的理论仿真和实验测量表明,PEH和EMEH之间的非线性相互作用驱动两个能量收集单元以大幅度混沌或周期性振荡,这可以改善PEH和EMEH在超高功率输出时的功率。低频,不仅扩大了HEH的工作带宽,而且使HEH适用于超低频能量收集。此外,握手测试表明,HEH的充电性能优于单个电容器的能量收集单元。在握手引起的激励下,预制的HEH原型还可以点亮数十个发光二极管(LED),从而证明了其为某些便携式电子设备供电的潜在应用。

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