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Adaptive Path Formation in Self-Assembling Robot Swarms by Tree-Like Vascular Morphogenesis.

  • Mohammad Divband Soorati
  • , Payam Zahadat
  • , Javad Ghofrani
  • , Heiko Hamann
  • University of Lübeck
  • Karl-Franzens University
  • Dresden University of Applied Sciences

Publikation: Konference artikel i Proceeding eller bog/rapport kapitelKonferencebidrag i proceedingsForskningpeer review

Abstract

For self-assembly, robot swarms can be programmed to form predefined shapes. However, if the swarm is required to adapt the assembled shapes to dynamic features of the environment at runtime, then the shapes’ structures need to be dynamic, too. A prerequisite for adaptation is the exploration and detection of changes followed by appropriate rearrangements of the assembled structure. We study a robot swarm that forms trees to explore its environment and searches for bright areas. The tree-formation process is inspired by the vascular morphogenesis of natural plants. The detection of light produces a virtual resource shared within the tree, helping to drop useless branches while reinforcing efficient paths between the bright areas and the tree root. We successfully verify our approach with several swarm robot experiments in a dynamic environment, showing that the robot swarm can collectively discriminate between light sources at different distances and of different qualities.
OriginalsprogEngelsk
TitelDistributed Autonomous Robotic Systems : Springer Proceedings in Advanced Robotics
Antal sider13
Vol/bind9
UdgivelsesstedCham, Switzerland
ForlagSpringer Nature Switzerland
Publikationsdato2018
Sider299-311
ISBN (Trykt)978-3-030-05815-9
ISBN (Elektronisk)978-3-030-05816-6
DOI
StatusUdgivet - 2018
Udgivet eksterntJa
BegivenhedDistributed Autonomous Robotic Systems - Boulder, USA
Varighed: 15 okt. 201817 okt. 2018
Konferencens nummer: 14

Konference

KonferenceDistributed Autonomous Robotic Systems
Nummer14
Land/OmrådeUSA
ByBoulder
Periode15/10/201817/10/2018

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