Tactile Sensor Array With Tertiary Leaf-Vein Structures and Position-Encoded Capacity

盲文 压阻效应 计算机科学 可穿戴计算机 人工智能 灵敏度(控制系统) 触觉传感器 传感器阵列 信号(编程语言) 计算机视觉 机器人 电气工程 工程类 电子工程 嵌入式系统 程序设计语言 机器学习 操作系统
作者
Chunpeng Jiang,Nan Zhao,Gencai Shen,Zude Lin,Bin Yang,Xiaolin Wang,Jingquan Liu
出处
期刊:IEEE Sensors Journal [Institute of Electrical and Electronics Engineers]
卷期号:21 (18): 21022-21029 被引量:4
标识
DOI:10.1109/jsen.2021.3099016
摘要

Flexible tactile sensor is a preferred alternative in the development of human-machine interface (HMI) and robotics, which directly influences how we understand and interact with physical world. High density and high sensitivity tactile sensor array are urgently desired to assist people acquire tactile information of multi objects. However, although the existing researches exhibit great perception of tactile signals with different magnitudes and frequencies, they also expose limitation in the retrieval of relative position relationships. Herein, we report a wearable and high density (96 sensors on the fingertip) tactile sensor array based on tertiary leaf-vein inspired piezoresistive film. Particularly, a tertiary microstructure in the direction of height, including mid-vein-mimicking wrinkle (MVW), lateral-vein-mimicking wrinkles (LVW) and minor-vein-mimicking wrinkles (mVW), has been demonstrated an effective method to fabricate rough surface. The highly surface-controllable piezoresistive film dramatically enhances the durability (over 5000 cycles) and improves the sensitivity from 8.44 kPa -1 to 25.80 kPa -1 under 2 kPa. Accordingly, we propose an innovative position-encoded algorithm aimed at high density tactile sensor array, which has been demonstrated an excellent encode capacity of translating the multi-location tactile information caused by Braille characters into human-readable outputs. This study not only provides a map scanning method for Braille recognition, but also has significant implications for position-based information exchange or tactile encryption.
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