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可穿戴式压电能量收集器的最新进展。

Recent developments in wearable piezoelectric energy harvesters.

作者信息

Sun Lei, He Lipeng, Yu Gang, Zheng Xiaotian, Wang Hongxin, Yu Dahai, Lin Jieqiong

机构信息

Key Laboratory of Micro/Nano and Ultra-Precision Manufacturing (Jilin Province), School of Mechatronic Engineering, Changchun University of Technology, Changchun, Jilin 130012, China.

Key Laboratory of CNC Equipment Reliability, Ministry of Education, Jilin University, Changchun, Jilin 130022, China.

出版信息

Rev Sci Instrum. 2024 Apr 1;95(4). doi: 10.1063/5.0159073.

Abstract

Wearable piezoelectric energy harvesters (WPEHs) have gained popularity and made significant development in recent decades. The harvester is logically built by the movement patterns of various portions of the human body to harvest the movement energy and immediately convert it into usable electrical energy. To directly power different microelectronic devices on the human body, a self-powered device that does not require an additional power supply is being created. This Review provides an in-depth review of WPEHs, explaining the fundamental concepts of piezoelectric technology and the materials employed in numerous widely used piezoelectric components. The harvesters are classed according to the movement characteristics of several portions of a person's body, such as pulses, joints, skin, and shoes (feet). Each technique is introduced, followed by extensive analysis. Some harvesters are compared, and the benefits and drawbacks of each technique are discussed. Finally, this Review presents future goals and objectives for WPEH improvement, and it will aid researchers in understanding WPEH to the point of more efficient wireless energy delivery to wearable electronic components.

摘要

近几十年来,可穿戴式压电能量采集器(WPEHs)越来越受欢迎并取得了显著发展。该采集器通过人体各部位的运动模式合理构建,以采集运动能量并立即将其转换为可用电能。为了直接为人体上的不同微电子设备供电,正在制造一种无需额外电源的自供电设备。本综述对WPEHs进行了深入回顾,解释了压电技术的基本概念以及众多广泛使用的压电元件中所采用的材料。这些采集器根据人体几个部位的运动特征进行分类,如脉搏、关节、皮肤和鞋子(脚部)。每种技术都有介绍,并进行了广泛分析。对一些采集器进行了比较,并讨论了每种技术的优缺点。最后,本综述提出了WPEH改进的未来目标,这将有助于研究人员了解WPEH,以便更高效地向可穿戴电子元件进行无线能量传输。

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