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Experiment and modeling of a two-dimensional piezoelectric energy harvester

机译:二维压电能量采集器的实验与建模

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Vibration energy harvesting using piezoelectric materials has attracted much research interest in recent years. Numerous efforts have been devoted to improving the efficiency of vibration energy harvesters and broadening their bandwidths. In most reported literature, energy harvesters are designed to harvest energy from vibration source with a specific excitation direction. However, a practical environmental vibration source may include multiple components from different directions. Thus, it is an important concern to design a vibration energy harvester to be adaptive to multiple excitation directions. In this article, a piezoelectric energy harvester with frame configuration is proposed to achieve two-dimensional (2D) vibration energy harvesting. The harvester works in two fundamental modes, i.e., its vertical and horizontal vibration modes. By tuning the structural parameters, the harvester can capture vibration energy from arbitrary directions in a 2D plane. Experimental studies are carried out to prove its feasibility. A finite element model and an equivalent circuit model are built to simulate the system and validate the experiment outcomes. The study of this 2D energy harvester indicates its promising potential in practical vibration scenarios.
机译:近年来,使用压电材料的振动能量收集引起了很多研究兴趣。为了提高振动能量收集器的效率并拓宽其带宽,已经进行了许多努力。在大多数报道的文献中,能量收集器被设计为从具有特定激励方向的振动源收集能量。但是,实际的环境振动源可能包括来自不同方向的多个组件。因此,设计振动能量收集器以适应多个激励方向是重要的考虑因素。在本文中,提出了一种具有框架结构的压电能量收集器,以实现二维(2D)振动能量收集。收割机以两种基本模式工作,即其垂直和水平振动模式。通过调整结构参数,收割机可以捕获2D平面中任意方向的振动能量。进行了实验研究以证明其可行性。建立了有限元模型和等效电路模型来模拟系统并验证实验结果。对该2D能量采集器的研究表明,它在实际振动场景中具有广阔的发展潜力。

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