Human-Inspired Tactile Perception System for Real-Time and Multimodal Detection of Tactile Stimuli

  • Bo Yeon Lee
  • , Seonggi Kim
  • , Sunjong Oh
  • , Youngoh Lee
  • , Jonghwa Park
  • , Hyunhyub Ko
  • , Ja Choon Koo
  • , Youngdo Jung
  • , Hyuneui Lim

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

A human can intuitively perceive and comprehend complicated tactile information because the cutaneous receptors distributed in the fingertip skin receive different tactile stimuli simultaneously and the tactile signals are immediately transmitted to the brain. Although many research groups have attempted to mimic the structure and function of human skin, it remains a challenge to implement human-like tactile perception process inside one system. In this study, we developed a real-time and multimodal tactile system that mimics the function of cutaneous receptors and the transduction of tactile stimuli from receptors to the brain, by using multiple sensors, a signal processing and transmission circuit module, and a signal analysis module. The proposed system is capable of simultaneously acquiring four types of decoupled tactile information with a compact system, thereby enabling differentiation between various tactile stimuli, texture characteristics, and consecutive complex motions. This skin-like three-dimensional integrated design provides further opportunities in multimodal tactile sensing systems.

Original languageEnglish
Pages (from-to)270-281
Number of pages12
JournalSoft Robotics
Volume11
Issue number2
DOIs
StatePublished - 1 Apr 2024

Keywords

  • 3D interconnection
  • electronic skin
  • multiple signal detection
  • real-time sensing
  • soft tactile sensors
  • tactile sensing system

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