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Impulse excitation of piezoelectric bimorphs for energy harvesting: a dimensionless model

机译:压电双压电晶片的脉冲激励用于能量收集:无量纲模型

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摘要

Energy harvesting (EH) is a multidisciplinary research area, involving physics, materials science and engineering, with the objective of providing renewable sources of power sufficient to operate targeted low-power applications. Piezoelectric transducers are often used for inertial vibrational as well as direct excitation EH. However, due to the stiffness of the most common material (PZT), compact and light-weight harvesters have high resonant frequencies, making them inefficient at extracting low-frequency power from the environment. The technique of frequency up-conversion, in the form of either plucking or impulse excitation, aims to bridge this frequency gap. In this paper, the technique is modelled analytically with focus on impulse excitation via impact or shock. An analytical model is developed in a standard way starting from the Euler-Bernoulli beam equations adapted to a piezoelectric bimorph. A set of dimensionless variables and parameters is defined and a system of differential equations derived. Here the system is solved numerically for a wide range of the two group parameters present, covering piezoelectric coupling strength between PVDF and PMN-PT. One major result is that the strength of the coupling strongly affects the timescale of the process, but has only a minor effect on the total energy converted. The model can be readily adapted to different excitation profiles.
机译:能量收集(EH)是一个多学科的研究领域,涉及物理学,材料科学和工程学,其目的是提供足以运行有针对性的低功率应用的可再生能源。压电换能器通常用于惯性振动以及直接激励EH。但是,由于最常用的材料(PZT)的刚度,紧凑而轻巧的收割机具有很高的谐振频率,使其无法有效地从环境中提取低频功率。以拔除或脉冲激励的形式进行的频率上转换技术旨在弥合该频率间隙。在本文中,对该技术进行了分析建模,重点是通过冲击或冲击产生的脉冲激励。从适用于压电双压电晶片的Euler-Bernoulli束方程开始,以标准方式开发分析模型。定义了一组无量纲的变量和参数,并导出了一个微分方程组。在这里,该系统针对存在的两组参数的较大范围进行了数值求解,涵盖了PVDF和PMN-PT之间的压电耦合强度。一个主要的结果是,耦合的强度极大地影响了过程的时间尺度,但对转换的总能量影响很小。该模型可以很容易地适应于不同的激励曲线。

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