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Brief Announcement: Fault-Tolerant Shape Formation in the Amoebot Model

  • Irina Kostitsyna
  • , Christian Scheideler
  • , Daniel Warner

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

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Abstract

The amoebot model is a distributed computing model of programmable matter. It envisions programmable matter as a collection of computational units called amoebots or particles that utilize local interactions to achieve tasks of coordination, movement and conformation. In the geometric amoebot model the particles operate on a hexagonal tessellation of the plane. Within this model, numerous problems such as leader election, shape formation or object coating have been studied. One area that has not received much attention so far, but is highly relevant for a practical implementation of programmable matter, is fault tolerance. The existing literature on that aspect allows particles to crash but assumes that crashed particles do not recover. We propose a new model in which a crash causes the memory of a particle to be reset and a crashed particle can detect that it has crashed and try to recover using its local information and communication capabilities. We propose an algorithm that solves the hexagon shape formation problem in our model if a finite number of crashes occur and a designated leader particle does not fail. At the heart of our solution lies a fault-tolerant implementation of the spanning forest primitive, which, since other algorithms in the amoebot model also make use of it, is also of general interest.

Original languageEnglish
Title of host publication1st Symposium on Algorithmic Foundations of Dynamic Networks (SAND 2022)
EditorsJames Aspnes, Othon Michail
PublisherSchloss Dagstuhl - Leibniz-Zentrum für Informatik
Pages23:1-23:3
Number of pages3
ISBN (Print)978-3-95977-224-2
DOIs
Publication statusPublished - 29 Apr 2022
Event1st Symposium on Algorithmic Foundations of Dynamic Networks, SAND 2022 - Virtual
Duration: 28 Mar 202230 Mar 2022

Publication series

NameLeibniz International Proceedings in Informatics, LIPIcs
Volume221
ISSN (Print)1868-8969

Conference

Conference1st Symposium on Algorithmic Foundations of Dynamic Networks, SAND 2022
Abbreviated titleSAND 2022
CityVirtual
Period28/03/2230/03/22

Keywords

  • Fault tolerance
  • Geometric amoebot model
  • Programmable matter
  • Shape formation

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