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可穿戴电子产品与智能纺织品:批判性综述

Wearable electronics and smart textiles: a critical review.

作者信息

Stoppa Matteo, Chiolerio Alessandro

机构信息

Center for Space Human Robotics, Istituto Italiano di Tecnologia, Corso Trento 21, 10129 Torino, Italy.

出版信息

Sensors (Basel). 2014 Jul 7;14(7):11957-92. doi: 10.3390/s140711957.

Abstract

Electronic Textiles (e-textiles) are fabrics that feature electronics and interconnections woven into them, presenting physical flexibility and typical size that cannot be achieved with other existing electronic manufacturing techniques. Components and interconnections are intrinsic to the fabric and thus are less visible and not susceptible of becoming tangled or snagged by surrounding objects. E-textiles can also more easily adapt to fast changes in the computational and sensing requirements of any specific application, this one representing a useful feature for power management and context awareness. The vision behind wearable computing foresees future electronic systems to be an integral part of our everyday outfits. Such electronic devices have to meet special requirements concerning wearability. Wearable systems will be characterized by their ability to automatically recognize the activity and the behavioral status of their own user as well as of the situation around her/him, and to use this information to adjust the systems' configuration and functionality. This review focuses on recent advances in the field of Smart Textiles and pays particular attention to the materials and their manufacturing process. Each technique shows advantages and disadvantages and our aim is to highlight a possible trade-off between flexibility, ergonomics, low power consumption, integration and eventually autonomy.

摘要

电子纺织品(e-textiles)是一种将电子元件和互连结构编织其中的织物,具有物理柔韧性和典型尺寸,这是其他现有电子制造技术无法实现的。元件和互连结构是织物固有的,因此不太显眼,不易被周围物体缠绕或钩住。电子纺织品还能更轻松地适应任何特定应用中计算和传感要求的快速变化,这一特性对于电源管理和情境感知很有用。可穿戴计算背后的愿景是未来电子系统将成为我们日常穿着的一部分。此类电子设备必须满足有关可穿戴性的特殊要求。可穿戴系统的特点是能够自动识别自身用户的活动和行为状态以及其周围的情况,并利用这些信息调整系统的配置和功能。本综述聚焦于智能纺织品领域的最新进展,并特别关注材料及其制造工艺。每种技术都有优缺点,我们的目的是突出在柔韧性、人体工程学、低功耗、集成度以及最终的自主性之间可能存在的权衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdaa/4168435/071eb544a36e/sensors-14-11957f1.jpg

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