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A broadband and two-dimensional vibration energy harvester using multiple magnetostrictive/piezoelectric composite transducers

机译:使用多个磁致伸缩/压电复合换能器的宽带二维振动能量采集器

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There is growing interest in energy scavenging from natural vibration sources to power autonomous wireless telemetry devices. Vibration energy is typically converted into electrical energy using piezoelectric, electromagnetic, or electrostatic transduction mechanisms [1]. Despite the transduction mechanisms and novel structures, there is still an obstacle facing realistic implementation in most of the vibration-based energy harvester, because they are deigned to harvest energy in a single direction of the ambient vibrations. But a vibration source in real environment may exhibit several motion directions over time. Hence, they may not generate power effectively in the case of a motion with multiple or time-variant motion directions. To address this issue, Moss et al. proposed a bi-axial oscillator to extract vibration energy with arbitrary motion directions in a plane [2]. However, the AISI 52100 ball oscillating on the surface of the Terfenol-D will damage the transducer inevitably, and the bandwidth of the harvester was narrow (about 1 Hz). Magnetoelectric (ME) transducers (composed of magnetostrictive/ piezoelectric laminate composites) were originally intended for magnetic field sensors but have recently been used in vibration energy harvesting. Therefore, we report on a design for an energy harvester using ME transducers, in which only one vibrating body is used to extract the ambient vibration energy with arbitrary in-plane motion directions, and the frequency bandwidth can be enhanced by nonlinear behavior of the magnetic force .
机译:人们越来越关注从自然振动源到自动无线遥测设备的能量清除。通常使用压电,电磁或静电转换机制将振动能转换为电能[1]。尽管具有换能机制和新颖的结构,但是在大多数基于振动的能量收集器中仍然存在着现实实施中的障碍,因为它们被设计为在环境振动的单个方向上收集能量。但是,实际环境中的振动源可能会随时间显示多个运动方向。因此,在具有多个或随时间变化的运动方向的运动的情况下,它们可能无法有效地发电。为了解决这个问题,Moss等人。提出了一种双轴振荡器来提取平面中任意运动方向的振动能量[2]。但是,在Terfenol-D表面振荡的AISI 52100球不可避免地会损坏换能器,并且收割机的带宽很窄(大约1 Hz)。磁电(ME)换能器(由磁致伸缩/压电叠层复合材料组成)最初用于磁场传感器,但最近已用于振动能量收集。因此,我们报告了一种使用ME换能器的能量收集器的设计,其中仅使用一个振动体来提取具有任意面内运动方向的环境振动能量,并且可以通过磁的非线性行为来增强频率带宽。力量。

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