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  4. Safe Interaction of Automated Forklifts and Humans at Blind Corners in a Warehouse with Infrastructure Sensors
 
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2021
Conference Paper
Title

Safe Interaction of Automated Forklifts and Humans at Blind Corners in a Warehouse with Infrastructure Sensors

Abstract
Co-working and interaction of automated systems and humans in a warehouse is a significant challenge of progressing industrial systems' autonomy. Especially, blind corners pose a critical scenario, in which infrastructure-based sensors can provide more safety. The automation of vehicles is usually tied to an argument on improved safety. However, current standards still rely on the awareness of humans to avoid collisions, which is limited at corners with occlusion. Based on the examination of blind corner scenarios in a warehouse, we derive the relevant critical situations. We propose an architecture that uses infrastructure sensors to prevent human-robot collisions at blind corners with respect to automated forklifts. This includes a safety critical function using wireless communication, which sporadically might be unavailable or disturbed. Therefore, the proposed architecture is able to mitigate these faults and gracefully degrades performance if required. Within our extensive evaluation, we use a warehouse simulation to verify our approach and to estimate the impact on an automated forklift's performance.
Author(s)
Drabek, Christian  
Fraunhofer-Institut für Kognitive Systeme IKS  
Kosmalska, Anna  
Fraunhofer-Institut für Kognitive Systeme IKS  
Weiß, Gereon  
Fraunhofer-Institut für Kognitive Systeme IKS  
Ishigooka, Tasuku
Hitachi Research and Development Group, Ibaraki
Otsuka, Satoshi
Hitachi Research and Development Group, Ibaraki
Mizuochi, Mariko
Hitachi Europe, Schwaig
Mainwork
Computer Safety, Reliability, and Security. 40th International Conference, SAFECOMP 2021. Proceedings  
Project(s)
LZ SiS SE2E
Funder
Bayerisches Staatsministerium für Wirtschaft, Landesentwicklung und Energie StMWi  
Conference
International Conference on Computer Safety, Reliability and Security (SAFECOMP) 2021  
File(s)
Download (470.88 KB)
DOI
10.24406/publica-r-412292
10.1007/978-3-030-83903-1_11
Language
English
Fraunhofer-Institut für Kognitive Systeme IKS  
Keyword(s)
  • driverless industrial truck

  • blind corner

  • infrastructure sensor

  • warehouse

  • safety

  • vehicle automation

  • safety critical

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