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Safe Human-Robot-Interaction in Highly Flexible Warehouses using Augmented Reality and Heterogenous Fleet Management System

A new Approach towards Safe Human-Robot-Interaction in Highly Flexible Warehouses
 
: Jost, Jana; Kirks, Thomas; Gupta, Preity; Lünsch, Dennis; Stenzel, Jonas

:

Institute of Electrical and Electronics Engineers -IEEE-; IEEE Robotics and Automation Society:
ISR 2018, International Conference on Intelligence and Safety for Robotics : August 24-27, 2018, Shenyang, Chin
Piscataway, NJ: IEEE, 2018
ISBN: 978-1-5386-5547-4
ISBN: 978-1-5386-5546-7
ISBN: 978-1-5386-5548-1
pp.256-260
International Conference on Intelligence and Safety for Robotics (ISR) <2018, Shenyang>
European Commission EC
H2020; 688117; SafeLog
Safe human-robot interaction in logistic applications for higly flexible
English
Conference Paper
Fraunhofer IML ()
robot; multi-agent-system; intralogistics; human-robot-interaction

Abstract
Nowadays, production systems and warehouses still lack human-robot collaboration. Often due to safety issues robots are kept behind safety fences and the overall system is shutdown once a human enters. This paper is based on a new concept to overcome these issues. It consists of a safety concept which ensures a more efficient human-robot collaboration. The human worker can be localized via a safety vest which he/she wears and the nearby robots are also aware of this information. We propose a more efficient and safe overall system by using an Augmented Reality device which offers a simple interface between humans and robots and a Heterogeneous Fleet Management System which plans and provides collision-free paths for humans and robots and ensures that the resulting environment is safe for both robots and humans.

: http://publica.fraunhofer.de/documents/N-537351.html