Load-suspended power backpack for labor saving and energy harvesting from human walk

纳米发生器 摩擦电效应 电容器 背包 材料科学 电气工程 汽车工程 能量收集 功率(物理) 电压 机械能 数码产品 工程类 结构工程 复合材料 物理 量子力学
作者
Ze Yang,Yiyong Yang,Junyao Shen,Aaron Li,Xuecheng Qu,Zhemin Lai,Linhong Ji,Jun Chen,Jia Cheng
出处
期刊:Nano Energy [Elsevier]
卷期号:121: 109190-109190 被引量:4
标识
DOI:10.1016/j.nanoen.2023.109190
摘要

Long-distance walk with a heavy load such as hiking and field rescue, often leads to accumulative fatigue. And continuous energy support for wearable electronics is often demanded in remote areas. Here, we report a new load-suspended power backpack that can realize labor saving and energy harvesting from human walking. An innovative suspended system is designed to decouple the synchronous movement of backpack and body, which consists of two elastomer-pulley block units and two linear sliding rod units. It also utilizes a new charge pumping technology of triboelectric nanogenerator (TENG) for high-efficient energy conversion, achieved by a specially designed main TENG and two buffer capacitors (BFC). The main TENG has one top electrode but two bottom ones to build two separated plate variable capacitors for charge storage. The new technology is characterized by using one top electrode to synchronously drive shuttling charges in four pathways between main TENG and BFCs, and generating electricity based on shuttling charges. Consequently, it can reduce the remarkable 32.6% vertical vibrations of load and 26.7% wearing force and provide a high voltage of 820 V and a current of 103.2 μA. The average power in one current pathway is calculated to 84.1 mW (336.4 mW for four ones) with an effective power density of 29.96 mW/g, high enough to light 354 small LEDs, 235 large LEDs, the electronic watch and thermos-hygrometer. The backpack can not only be applied to relieve accumulative fatigue, but also has great potential to be an energy source for continuously driving wearable electronics for various applications.
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