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Analysis of magnetic plucking dynamics in a frequency up-converting piezoelectric energy harvester

机译:频率上转换压电能量收割机中磁力拔除动力学的分析

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The paper reports on numerical-experimental analysis of magnetic plucking, which is commonly applied for contactless mechanical frequency up-conversion in vibration energy harvesters with the aim of enhancing power output and efficiency under low-frequency (non)periodic excitations. In-plane magnetic plucking is examined thoroughly by treating it as a specific type of transient excitation that is governed by temporal characteristics of complex-shaped magnetic force impulses. The study focuses on systematic analysis of the measured dynamic and electric characteristics of a magnetically plucked cantilever-type piezoelectric energy harvester, which operates in quasi-static, transitory and dynamic modes. Experimental findings are supported by results of magnetostatic/dynamic finite element analysis, enabling to establish key criteria for attaining sharp impulsive excitation, which is a prerequisite for the highly effective frequency up-conversion. The criteria are defined in terms of dimensionless governing parameters that relate relevant temporal characteristics of magnetic force impulses (duration, ramping times) to the dynamic characteristics of the transducer (natural period, rise time). A phenomenon of transient resonance is demonstrated to deliver peak power and energy outputs. The reported findings are applicable to different magnetic plucking configurations and transducers of arbitrary natural frequency. The results serve as a guideline for the rational design of a wide variety of frequency up-converting devices by providing valuable insight into magnetic plucking dynamics, which is conducive to the development of high-performance biomechanical energy harvesters intended for self-powered wearable electronics.
机译:本文报告了磁力拔桩数值实验分析,其常用于振动能量收割机中的非接触式机械频率上转换,其目的是在低频(非)周期激发下的功率输出和效率。通过将其作为特定类型的瞬态激励进行彻底地检查面内磁力,该瞬态激励是由复杂形磁力脉冲的时间特征控制的特定类型的瞬态激发。该研究侧重于对磁力悬臂式压电能量收割机的测量动态和电特性的系统分析,其以准静态,暂时和动态模式运行。磁静电/动态有限元分析结果支持实验结果,使能够建立敏锐冲动激励的关键标准,这是高效频率上转换的先决条件。标准在无量纲的控制参数方面定义,该参数将磁力冲动(持续时间,延长时间)的相关时间特征与换能器(自然时期,上升时间)的动态特性相关。证明了瞬态谐振现象以提供峰值功率和能量输出。报告的发现适用于不同的磁力拔除配置和任意自然频率的换能器。结果作为各种频率上升装置的合理设计指导,通过提供对磁力拔毛动态的宝贵洞察力,这有利于开发用于自动穿戴电子设备的高性能生物力学能量收割机。

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