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  4. Combining adaptive holonic control and ISA-95 architectures to self-organize the interaction in a worker-industrial robot cooperative workcell
 
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2017
Journal Article
Title

Combining adaptive holonic control and ISA-95 architectures to self-organize the interaction in a worker-industrial robot cooperative workcell

Abstract
Self-Organization is a spontaneous trend which exists in nature among different organisms. Self-organization refers to the process where some form of an overall order arises in a group due to the local interaction among the members of this group. In manufacturing, a similar definition of a Reconfigurable Manufacturing System (RMS) can be found. RMS is a system where the production components and functions can be modified, rearranged and/or interchanged in a timely and cost-effective manner to quickly respond to the production requirements. The definition of the RMS concept implies that the self-organization is an important key factor to fulfil that concept. A case study where a cooperation among a variable number of Industrial Robots (IRs) and workers is studied to show the importance of the research problem. The goal of the paper is to offer a suitable generic control and interaction architecture solution model, which obtains the self-organization from the RMS point of view. Ultimately, applying the proposed solution concept to the case study.
Author(s)
Sadik, Ahmed R.
Fraunhofer-Institut für Graphische Datenverarbeitung IGD  
Urban, Bodo  
Fraunhofer-Institut für Graphische Datenverarbeitung IGD  
Journal
Future Internet  
Open Access
DOI
10.3390/fi9030035
Language
English
Fraunhofer-Institut für Graphische Datenverarbeitung IGD  
Keyword(s)
  • multi agent system

  • human-robot interaction (HRI)

  • Lead Topic: Digitized Work

  • Research Line: Human computer interaction (HCI)

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