低信号干扰柔性光电多模态接近/压力/温度传感器。

IF 27.4 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Shan Wang, Xiaoyu Wang, Qi Wang, Shuqi Ma, Jianliang Xiao, Haitao Liu, Jing Pan, Zhang Zhang, Lei Zhang
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引用次数: 0

摘要

多模式触觉传感器是智能人机交互与协作的重要组成部分。在单个传感器上同时检测接近度、压力和温度可以极大地提高交互系统的安全性、交互性和紧凑性。然而,严重的信号干扰和复杂的解耦算法阻碍了实际应用。在这里,这项工作报告了一种柔性光电多模式传感器,该传感器能够通过将光波导和叉指电极(IDE)集成到紧凑的纤维传感器中来检测和解耦接近度/压力/温度。可忽略的信号干扰是通过将光学和电子的异质传感机制相结合来实现的,该机制将接近度编码为电容,将压力编码为光强,将温度编码为电阻。该传感器具有225 mm的大传感距离,接近检测响应快,压力灵敏度为0.42 N-1,温度灵敏度为7%°C-1。作为概念验证,配备传感器的玩偶可以准确识别和检测各种刺激,从而实现与用户的安全和身临其境的互动。这项工作为自解耦多模式传感器和相关的人/机/环境交互应用开辟了有前景的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible Optoelectronic Multimodal Proximity/Pressure/Temperature Sensors with Low Signal Interference

Multimodal tactile sensors are a crucial part of intelligent human-machine interaction and collaboration. Simultaneous detection of proximity, pressure, and temperature on a single sensor can greatly promote the safety, interactivity, and compactness of interaction systems. However, severe signal interference and complex decoupling algorithms hinder the actual applications. Here, this work reports a flexible optoelectronic multimodal sensor capable of detecting and decoupling proximity/pressure/temperature by integrating a light waveguide and an interdigital electrode (IDE) into a compact fibrous sensor. Negligible signal interference is realized by combining heterogeneous sensing mechanisms of optics and electronics, which encodes proximity into capacitance, pressure into light intensity and temperature into resistance. The sensor exhibits a large sensing distance of 225 mm with fast responses for proximity detection, a pressure sensitivity of 0.42 N−1, and a temperature sensitivity of 7% °C−1. As a proof of concept, a doll equipped with the sensor can accurately discriminate and detect various stimuli, thus achieving safe and immersive interactions with the user. This work opens up promising paths for self-decoupled multimodal sensors and related human/machine/environment interaction applications.

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来源期刊
Advanced Materials
Advanced Materials 工程技术-材料科学:综合
CiteScore
43.00
自引率
4.10%
发文量
2182
审稿时长
2 months
期刊介绍: Advanced Materials, one of the world's most prestigious journals and the foundation of the Advanced portfolio, is the home of choice for best-in-class materials science for more than 30 years. Following this fast-growing and interdisciplinary field, we are considering and publishing the most important discoveries on any and all materials from materials scientists, chemists, physicists, engineers as well as health and life scientists and bringing you the latest results and trends in modern materials-related research every week.
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