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压电式鞋类能量收集器综述:原理、方法及应用

A Review of Piezoelectric Footwear Energy Harvesters: Principles, Methods, and Applications.

作者信息

Zhao Bingqi, Qian Feng, Hatfield Alexander, Zuo Lei, Xu Tian-Bing

机构信息

Department of Mechanical Engineering and Aerospace, Old Dominion University, Norfolk, VA 23529, USA.

Department of Mechanical Engineering Technology, The Behrend College, Pennsylvania State University, Erie, PA 16563, USA.

出版信息

Sensors (Basel). 2023 Jun 23;23(13):5841. doi: 10.3390/s23135841.

Abstract

Over the last couple of decades, numerous piezoelectric footwear energy harvesters (PFEHs) have been reported in the literature. This paper reviews the principles, methods, and applications of PFEH technologies. First, the popular piezoelectric materials used and their properties for PEEHs are summarized. Then, the force interaction with the ground and dynamic energy distribution on the footprint as well as accelerations are analyzed and summarized to provide the baseline, constraints, potential, and limitations for PFEH design. Furthermore, the energy flow from human walking to the usable energy by the PFEHs and the methods to improve the energy conversion efficiency are presented. The energy flow is divided into four processing steps: (i) how to capture mechanical energy into a deformed footwear, (ii) how to transfer the elastic energy from a deformed shoes into piezoelectric material, (iii) how to convert elastic deformation energy of piezoelectric materials to electrical energy in the piezoelectric structure, and (iv) how to deliver the generated electric energy in piezoelectric structure to external resistive loads or electrical circuits. Moreover, the major PFEH structures and working mechanisms on how the PFEHs capture mechanical energy and convert to electrical energy from human walking are summarized. Those piezoelectric structures for capturing mechanical energy from human walking are also reviewed and classified into four categories: flat plate, curved, cantilever, and flextensional structures. The fundamentals of piezoelectric energy harvesters, the configurations and mechanisms of the PFEHs, as well as the generated power, etc., are discussed and compared. The advantages and disadvantages of typical PFEHs are addressed. The power outputs of PFEHs vary in ranging from nanowatts to tens of milliwatts. Finally, applications and future perspectives are summarized and discussed.

摘要

在过去几十年中,文献报道了众多压电式鞋类能量采集器(PFEH)。本文综述了PFEH技术的原理、方法及应用。首先,总结了用于PFEH的常用压电材料及其特性。然后,分析并总结了与地面的力相互作用、足迹上的动态能量分布以及加速度,为PFEH设计提供基线、约束条件、潜力和局限性。此外,还介绍了从人类行走能量到PFEH可用能量的能量流以及提高能量转换效率的方法。能量流分为四个处理步骤:(i)如何将机械能捕获到变形的鞋类中,(ii)如何将弹性能从变形的鞋子传递到压电材料中,(iii)如何在压电结构中将压电材料的弹性变形能转换为电能,以及(iv)如何将压电结构中产生的电能输送到外部电阻负载或电路中。此外,总结了PFEH捕获机械能并将其从人类行走转换为电能的主要结构和工作机制。还对那些用于从人类行走中捕获机械能的压电结构进行了综述,并将其分为四类:平板、弯曲、悬臂和弯张结构。讨论并比较了压电能量采集器的基本原理、PFEH的配置和机制以及产生的功率等。阐述了典型PFEH的优缺点。PFEH的功率输出范围从纳瓦到几十毫瓦不等。最后,总结并讨论了应用和未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24e4/10346551/28c0a9666e83/sensors-23-05841-g001.jpg

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