Vision-driven Collaborative Mobile Robotic Human Assistant System for Daily Living Activities

Yuankai Wu, Rayene Messaoud, Xiao Chen, Arne Christoph Hildebrandt, Marco Baldini, Constantin Patsch, Hamid Sadeghian, Sami Haddadin, Eckehard Steinbach

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

1 Scopus citations

Abstract

Assistive robotics is a rapidly growing research area. They are increasingly in demand in industry, medical services, or even domestic environments. Many assistance systems were developed in the last decades to help with industry tasks mainly. However, the majority of assistive robotic systems can only execute commands according to pre-defined instructions and are not capable of social interaction with humans. To this end, a human-centered assistive robotic system that can automatically assist or completely help humans to accomplish their intentions is expected. In this paper, we first proposed a novel triplet concept that describes the intended task of humans but will be executed by the assistive robot. The triplet includes target object, subject and action enabling the robot to identify auxiliary subjects, desired objects and perform required actions. Furthermore, a vision-driven mobile robotic human assistant system for assisting humans in daily life tasks is developed. The proposed triplet was proven to be able to complete a fully autonomous robotic system as a predefined input guide. Sensor calibration, deep learning based object detection, manipulation, and grasping techniques are used to achieve this goal. We evaluated the proposed system using various simulation and experimental scenarios and confirmed its effectiveness.

Original languageEnglish
Title of host publicationIFAC-PapersOnLine
EditorsHideaki Ishii, Yoshio Ebihara, Jun-ichi Imura, Masaki Yamakita
PublisherElsevier B.V.
Pages4400-4405
Number of pages6
Edition2
ISBN (Electronic)9781713872344
DOIs
StatePublished - 1 Jul 2023
Event22nd IFAC World Congress - Yokohama, Japan
Duration: 9 Jul 202314 Jul 2023

Publication series

NameIFAC-PapersOnLine
Number2
Volume56
ISSN (Electronic)2405-8963

Conference

Conference22nd IFAC World Congress
Country/TerritoryJapan
CityYokohama
Period9/07/2314/07/23

Keywords

  • Assistive robot
  • Autonomous robotic systems
  • Human-centred automation and design
  • Perception and sensing

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