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A Self-Powered Insole for Human Motion Recognition

机译:用于人体运动识别的自供电鞋垫

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摘要

Biomechanical energy harvesting is a feasible solution for powering wearable sensors by directly driving electronics or acting as wearable self-powered sensors. A wearable insole that not only can harvest energy from foot pressure during walking but also can serve as a self-powered human motion recognition sensor is reported. The insole is designed as a sandwich structure consisting of two wavy silica gel film separated by a flexible piezoelectric foil stave, which has higher performance compared with conventional piezoelectric harvesters with cantilever structure. The energy harvesting insole is capable of driving some common electronics by scavenging energy from human walking. Moreover, it can be used to recognize human motion as the waveforms it generates change when people are in different locomotion modes. It is demonstrated that different types of human motion such as walking and running are clearly classified by the insole without any external power source. This work not only expands the applications of piezoelectric energy harvesters for wearable power supplies and self-powered sensors, but also provides possible approaches for wearable self-powered human motion monitoring that is of great importance in many fields such as rehabilitation and sports science.
机译:生物力学能量收集是通过直接驱动电子设备或充当可穿戴式自供电传感器为可穿戴式传感器供电的可行解决方案。据报道,一种可穿着的鞋垫不仅可以在步行过程中从脚的压力中获取能量,而且还可以用作自供电的人体运动识别传感器。鞋垫设计为三明治结构,由两个波浪形硅胶膜组成,由柔软的压电箔壁隔开,与传统的具有悬臂结构的压电收割机相比,其性能更高。能量收集鞋垫能够通过清除人类步行中的能量来驱动一些常见的电子设备。此外,当人们处于不同的运动模式时,它可以产生变化的波形来识别人的运动。结果表明,在没有任何外部电源的情况下,鞋垫可以清楚地区分诸如步行和跑步等不同类型的人体运动。这项工作不仅扩大了可穿戴式电源和自供电传感器的压电式能量采集器的应用范围,而且还为可穿戴式自供电式人体运动监测提供了可能的方法,这在许多领域(例如康复和体育科学)都非常重要。

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