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Stiffness estimation of delicate objects using a soft haptic whisker

  • Mohammad Sheikh Sofla*
  • , Abdurrahman Yilmaz
  • , Grzegorz Cielniak
  • , Marcello Calisti
  • *Corresponding author for this work
  • University of Lincoln
  • Sant'Anna School of Advanced Studies

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

1 Citation (Scopus)

Abstract

Soft whiskers allow for haptic sensing without damaging or altering the object being tested, which is particularly advantageous in delicate environments. A novel method for stiffness estimation using a soft haptic whisker is proposed in this research. The whisker, fabricated from Thermoplastic Polyurethane (TPU), deforms upon contact with objects, allowing for non-invasive stiffness measurement. Utilizing force and moment readings at the whisker's base, the system calculates the object's stiffness based on shape deformations modeled using the Cosserat rod theory. Experimental validation was conducted on both flexible tree saplings in a lab and delicate plant structures, such as strawberry stalks and leaves, in a polytunnel. Results demonstrate that the soft whisker can measure stiffness without damaging the objects, offering up to 30 times lower contact forces compared to a rigid probe. This method provides a safe, efficient solution for interacting with sensitive environments, opening possibilities for its application in robotic manipulation of delicate items.

Original languageEnglish
Title of host publication2025 IEEE 8th International Conference on Soft Robotics, RoboSoft 2025
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9798331520205
DOIs
Publication statusPublished - 2025
Externally publishedYes
Event8th IEEE International Conference on Soft Robotics, RoboSoft 2025 - Lausanne, Switzerland
Duration: 22 Apr 202526 Apr 2025

Publication series

Name2025 IEEE 8th International Conference on Soft Robotics, RoboSoft 2025

Conference

Conference8th IEEE International Conference on Soft Robotics, RoboSoft 2025
Country/TerritorySwitzerland
CityLausanne
Period22/04/2526/04/25

Bibliographical note

Publisher Copyright:
© 2025 IEEE.

Keywords

  • Cosserat rod theory
  • Soft whisker
  • Stiffness estimation
  • haptic exploration

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