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首页> 外文期刊>Journal of intelligent material systems and structures >Energy harvesting using flexible piezoelectric materials from human walking motion: Theoretical analysis
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Energy harvesting using flexible piezoelectric materials from human walking motion: Theoretical analysis

机译:使用人体步行运动中的柔性压电材料进行能量收集:理论分析

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摘要

Human walking is a good energy source that can be harvested to support wearable devices. For one walking cycle, the muscles at each joint of human lower body consume tens of watts. The considerable amount of kinetic energy generated while walking can be turned to useful electric energy through energy transducers. In this article, we theoretically investigate energy harvesting from flexible piezoelectric materials attached to humans while walking. We focus on the hip, knee, and ankle motions of walking humans and analyze the frequency characteristic of the motions using Fourier series fitting. A model is utilized to predict the electrical responses from piezoelectric materials and the power harvested through load resistances. In particular, we estimate the harvested power from polyvinylidene fluoride and derive the contour maps with respect to the harvested power as a function of the load resistance and walking frequency. Moreover, we discuss the necessary mechanical power input required to deflect the energy harvester and the effects of the varied parameters.
机译:人的行走是一种很好的能源,可以被收集起来以支撑可穿戴设备。在一个步行周期中,人类下半身每个关节的肌肉消耗数十瓦特。步行时产生的大量动能可以通过能量传感器转换为有用的电能。在本文中,我们从理论上研究了步行时从附着于人的柔性压电材料中收集能量的方法。我们专注于步行人类的臀部,膝盖和脚踝运动,并使用傅立叶级数拟合分析运动的频率特性。利用模型来预测压电材料的电响应以及通过负载电阻收集的功率。特别是,我们估算了聚偏二氟乙烯的收割功率,并得出了相对于收割功率的轮廓图,该轮廓图是负载电阻和行走频率的函数。此外,我们讨论了偏转能量收集器所需的必要机械功率输入以及各种参数的影响。

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