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Modelling physical human-robot interface with different users, cuffs, and strapping pressures: A case study

  • Mingrui Sun
  • , Tomislav Bacek
  • , Dana Kulic
  • , Jennifer McGinley
  • , Denny Oetomo
  • , Ying Tan

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

Abstract

Assisting persons during physical therapy or augmenting their performance often requires precise delivery of an intervention. Robotic devices are perfectly placed to do so, but their intervention highly depends on the physical human-robot connection. The inherent compliance in the connection leads to delays and losses in bi-directional power transmission and can lead to human-robot joint axes misalignment. This is often neglected in the literature by assuming a rigid connection and has a negative impact on the intervention's effectiveness and robustness. This paper presents the preliminary results of a study that aims to close that gap. The study investigates what model forms and parameters best capture human-robot connection dynamics across different persons, connection designs (cuffs), and cuff strapping pressures. The results show that the linear spring-damper model is the best compromise, but its parameters must be adjusted for each individual and different conditions separately.

Original languageEnglish
Title of host publication2023 International Conference on Rehabilitation Robotics (ICORR 2023)
EditorsZen Koh
Place of PublicationPiscataway NJ USA
PublisherIEEE, Institute of Electrical and Electronics Engineers
Pages270-275
Number of pages6
ISBN (Electronic)9798350342758
ISBN (Print)9798350342765
DOIs
Publication statusPublished - 2023
EventInternational Conference on Rehabilitation Robotics 2023 - Singapore, Singapore
Duration: 24 Sept 202328 Sept 2023
https://ieeexplore.ieee.org/xpl/conhome/10304677/proceeding?isnumber=10304678&sortType=vol-only-seq&rowsPerPage=100&pageNumber=1 (Proceedings)
https://web.archive.org/web/20230304143058/https://www.rehabweek.org/congress-information/general-information/ (Website)
https://web.archive.org/web/20230304143057/https://www.rehabweek.org/scientific-information/abstract-submission/icorr-paper-submission/ (Review Process)

Publication series

NameIEEE International Conference on Rehabilitation Robotics
PublisherIEEE, Institute of Electrical and Electronics Engineers
ISSN (Print)1945-7898
ISSN (Electronic)1945-7901

Conference

ConferenceInternational Conference on Rehabilitation Robotics 2023
Abbreviated titleICORR 2023
Country/TerritorySingapore
CitySingapore
Period24/09/2328/09/23
Internet address

Keywords

  • modelling
  • physical human-robot interaction

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