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收集惯性能量并为可穿戴设备供电:综述

Harvesting Inertial Energy and Powering Wearable Devices: A Review.

作者信息

Zhang Hexiang, Shen Qianhui, Zheng Peng, Wang Hao, Zou Rui, Zhang Zutao, Pan Yajia, Zhi Jin-Yi, Xiang Ze-Rui

机构信息

School of Mechanical Engineering, Southwest Jiaotong University, Chengdu, 610031, P. R. China.

Yibin Research Institute, Southwest Jiaotong University, Yibin, 64000, P. R. China.

出版信息

Small Methods. 2024 Jan;8(1):e2300771. doi: 10.1002/smtd.202300771. Epub 2023 Oct 18.

Abstract

Amidst the swift progression of microelectronics and Internet of Things technology, wearable devices are gradually gaining ground in the domains of human health monitoring. Recently, human bioenergy harvesting has emerged as a plausible alternative to batteries. This paper delves into harvesting human inertial energy that stimulates inertial masses through human motion and then transmutes the motion of the inertial masses into electrical energy. The inertial energy harvester is better suited for low-frequency and irregular human motion. This review first identifies the sources of human motion excitation that are compatible with inertial energy harvesters and then provides a summary of the operating principles and the comparisons of the commonly used energy conversion mechanisms, including electromagnetic, piezoelectric, and triboelectric transducers. The review thoroughly summarizes the latest advancements in human inertial energy-harvesting technology that are categorized and grouped based on their excitation sources and mechanical modulation methods. In addition, the review outlines the applications of inertial energy harvesters in powering wearable devices, medical health monitoring, and as mobile power sources. Finally, the challenges faced by inertial energy-harvesting technologies are discussed, and the review provides a perspective on the potential developments in the field.

摘要

在微电子和物联网技术迅速发展的背景下,可穿戴设备在人体健康监测领域正逐渐占据一席之地。最近,人体生物能量收集已成为一种可行的电池替代方案。本文深入探讨了通过人体运动刺激惯性质量,进而将惯性质量的运动转化为电能来收集人体惯性能量的方法。惯性能量收集器更适合于低频和不规则的人体运动。本综述首先确定了与惯性能量收集器兼容的人体运动激发源,然后总结了常用能量转换机制的工作原理及比较,包括电磁、压电和摩擦电换能器。该综述全面总结了人体惯性能量收集技术的最新进展,并根据其激发源和机械调制方法进行了分类和分组。此外,该综述还概述了惯性能量收集器在为可穿戴设备供电、医疗健康监测以及作为移动电源方面的应用。最后,讨论了惯性能量收集技术面临的挑战,并对该领域的潜在发展提供了展望。

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