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The Impact of Multi-scale Control Topology on Asset Distribution in Dynamic Environments

  • IT University of Copenhagen

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

Abstract

In many self-organising systems the ability to extract necessary resources from the external environment is essential for growth and survival. E.g., extracting sunlight and nutrients in organic plants, monetary income in business organisations and mobile robots in intelligent swarms. When operating within competitive, changing environments, such systems must distribute their assets wisely, to improve and adapt their ability to extract available resources. As the system size increases, the assetdistribution process often gets organised around a multi-scale control topology. This topology may be static (fixed) or dynamic (enabling growth and structural adaptation) depending on the system's constraints and adaptive mechanisms. In this paper we expand on a plant-inspired asset-distribution model and study the impact that the topology of the multi-scale control process has upon the system's ability to self-adapt asset distribution when resource availability changes within the environment. Results show how different topological characteristics and different competition levels between system branches impact overall system profitability, adaptation delays and disturbances when environmental changes occur. These findings provide a basis for system designers to select the most suitable topology and configuration for their particular application and execution environment.

Original languageEnglish
Title of host publicationProceedings - 2022 IEEE International Conference on Autonomic Computing and Self-Organizing Systems Companion, ACSOS-C 2022
EditorsRoberto Casadei, Elisabetta Di Nitto, Ilias Gerostathopoulos, Danilo Pianini, Ivana Dusparic, Timothy Wood, Phyllis Nelson, Evangelos Pournaras, Nelly Bencomo, Sebastian Gotz, Christian Krupitzer, Claudia Raibulet
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages31-36
Number of pages6
ISBN (Electronic)9781665471374
DOIs
Publication statusPublished - 1 Jan 2022
Event3rd IEEE International Conference on Autonomic Computing and Self-Organizing Systems Companion, ACSOS-C 2022 - Virtual, Online, United States
Duration: 19 Sept 202223 Sept 2022

Publication series

NameProceedings - 2022 IEEE International Conference on Autonomic Computing and Self-Organizing Systems Companion, ACSOS-C 2022

Conference

Conference3rd IEEE International Conference on Autonomic Computing and Self-Organizing Systems Companion, ACSOS-C 2022
Country/TerritoryUnited States
CityVirtual, Online
Period19/09/2223/09/22

Keywords

  • dynamic environment
  • multi-scale control
  • self-adaptive asset distribution
  • topology

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