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首页> 外文期刊>Journal of intelligent material systems and structures >Electromechanical Modeling of the Low-Frequency Zigzag Micro-Energy Harvester
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Electromechanical Modeling of the Low-Frequency Zigzag Micro-Energy Harvester

机译:低频之字形微能量采集器的机电模型

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摘要

An analytical electromechanical model is proposed to predict the deflection, voltage, and the power output of a proposed low-frequency micro-harvesting structure. The high natural frequencies of the existing designs of micro-scale vibrational energy harvesters are serious drawbacks. A zigzag design is proposed to overcome this limitation. First, the natural frequencies and the mode shapes of the zigzag structure are calculated. The piezoelectric direct and reverse effect equations, together with the electrical equations, are used to relate the voltage output of the structure to the base vibrations magnitude and frequency. The closed-form solution of the continuous electromechanical vibrations gives the power output as a function of base acceleration spectrum. The usefulness of the design is proved by the significant increase of the power output from the same base accelerations, providing a method of designing a micro-scale harvester with low natural frequency. The optimal mechanical and electrical conditions for power generation are investigated through the case studies.
机译:提出了一种解析机电模型来预测拟议的低频微收获结构的挠度,电压和功率输出。微型振动能量收集器的现有设计的高固有频率是严重的缺点。提出了一种之字形设计来克服该限制。首先,计算锯齿形结构的固有频率和众数形状。压电正向和反向效应方程以及电方程用于将结构的电压输出与基本振动幅度和频率相关联。连续机电振动的封闭形式解决方案给出的功率输出是基础加速度谱的函数。相同基础加速度下的功率输出显着增加证明了该设计的实用性,从而提供了一种设计具有低固有频率的微型收割机的方法。通过案例研究,研究了发电的最佳机械和电气条件。

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