Wireless and Flexible Tactile Sensing Array Based on an Adjustable Resonator with Machine‐Learning Perception

Author:

Xu Baochun1,Chen Da1,Wang Yu1,Tang Ruili1,Yang Lina1,Feng Hui1,Liu Yijian1,Wang Zhuopeng1,Wang Fei1,Zhang Tong1ORCID

Affiliation:

1. College of Electronic and Information Engineering Shandong University of Science and Technology Qingdao 266590 China

Abstract

AbstractIntelligent soft robotics and wearable electronics require flexible, wireless radio frequency (RF) pressure sensors for human‐like tactile perception of their moving parts. Existing devices face two challenges for array extension: the construction of sensitive units over a limited area and the handling of resonant peaks overlapping within the channel width. Herein, a simply adjustable RF‐resonator‐based tactile array (RFTA) is reported, in which the initial frequency of each resonator unit is regulated by doping polydimethylsiloxane (PDMS) dielectric layers with various concentrations of multiwalled carbon nanotubes (MWCNTs). An array is constructed using four sensor units with a frequency interval of 15 MHz and a multi‐layer micropyramid structure is employed to obtain a low detection limit (<1 Pa) and high sensitivity (17.49 MHz kPa‐1 in the low‐pressure range). A machine‐learning‐based strategy identifies tactile positions precisely via a one‐time S11 reading, achieving 98.5% accuracy with six stimulation modes. Furthermore, the RFTA distinguishes six objects during the grasping process when installed on a soft manipulator. The device shows considerable potential to be extended for flexible moving scenarios and high‐integrated tactile sensing systems for soft robotics.

Funder

National Natural Science Foundation of China

Youth and Middle-aged Scientific and Technological Innovation Leading Talents Program of the Corps

Shenzhen Science and Technology Innovation Program

Youth Innovation Technology Project of Higher School in Shandong Province

Publisher

Wiley

Subject

Electronic, Optical and Magnetic Materials

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