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Shape Sensing of Continuum Manipulator Using Sliding Resistive Flex Sensors

  • Chenhan Zhang
  • , Shaopeng Jiang
  • , Heyun Wang
  • , Joshua Liu
  • , Amit Jain
  • , Mehran Armand

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

We present a compact and inexpensive shape-sensing framework for Continuum Dexterous Manipulators (CDMs) based on sliding Resistive Flex Sensors (RFS). Unlike prior approaches that rely on multiple fixed sensors, the proposed method reconstructs joint-level configurations using only two RFS units that slide within embedded channels through the CDM walls. As the manipulator bends, the RFS units capture local curvature across multiple joints, with their positions tracked by rotary encoders. A lightweight Residual Neural Network (ResNet) maps the combined sensor and encoder data to 2D joint positions, eliminating the need for complex physical modeling. We demonstrate early feasibility in C-shaped configurations with non-constant curvature. The proposed system achieves an average positional error of 0.97 mm with a latency of 1.16 ms. Compared to other inexpensive embedded sensing approaches such as embedded capacitive sensors, the proposed method improves accuracy, reduces the number of required sensors, and enables direct spatial reconstruction.

Original languageEnglish (US)
Title of host publicationIEEE SENSORS 2025 - Conference Proceedings
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9798331544676
DOIs
StatePublished - 2025
Externally publishedYes
Event2025 IEEE SENSORS - Vancouver, Canada
Duration: Oct 19 2025Oct 22 2025

Publication series

NameProceedings of IEEE Sensors
ISSN (Print)1930-0395
ISSN (Electronic)2168-9229

Conference

Conference2025 IEEE SENSORS
Country/TerritoryCanada
CityVancouver
Period10/19/2510/22/25

Keywords

  • Continuum Dexterous Manipulators
  • Resistive Flex Sensors
  • Shape Reconstruction

ASJC Scopus subject areas

  • Electrical and Electronic Engineering

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