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Properties of a Formal Method for Prediction of Emergent Behaviors in Swarm-Based Systems

Published: 28 September 2004 Publication History

Abstract

Autonomous intelligent swarms of satellites are being proposed for NASA missions that have complex behaviors and interactions. The emergent properties of swarms make these missions powerful, but at the same time more difficult to design and assure that proper behaviors will emerge. This paper gives the results of research into formal methods techniques for verification and validation of NASA swarm-based missions. Multiple formal methods were evaluated to determine their effectiveness in modeling and assuring the behavior of swarms of spacecraft. The NASA ANTS mission was used as an example of swarm intelligence for which to apply the formal methods. This paper will give the evaluation of these formal methods and give partial specifications of the ANTS mission using four selected methods. We then give an evaluation of the methods and the needed properties of a formal method for effective specification and prediction of emergent behavior in swarm-based systems.

Cited By

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  • (2019)Swarm engineering through quantitative measurement of swarm robotic principles in a 10,000 robot swarmProceedings of the 28th International Joint Conference on Artificial Intelligence10.5555/3367032.3367081(336-342)Online publication date: 10-Aug-2019
  • (2016)Formal Verification of Opinion Formation in SwarmsProceedings of the 2016 International Conference on Autonomous Agents & Multiagent Systems10.5555/2936924.2937099(1200-1208)Online publication date: 9-May-2016
  • (2015)Formalization of Weak Emergence in Multiagent SystemsACM Transactions on Modeling and Computer Simulation10.1145/281550226:1(1-25)Online publication date: 23-Sep-2015
  • Show More Cited By

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Published In

cover image Guide Proceedings
SEFM '04: Proceedings of the Software Engineering and Formal Methods, Second International Conference
September 2004
401 pages
ISBN:076952222X

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IEEE Computer Society

United States

Publication History

Published: 28 September 2004

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Cited By

View all
  • (2019)Swarm engineering through quantitative measurement of swarm robotic principles in a 10,000 robot swarmProceedings of the 28th International Joint Conference on Artificial Intelligence10.5555/3367032.3367081(336-342)Online publication date: 10-Aug-2019
  • (2016)Formal Verification of Opinion Formation in SwarmsProceedings of the 2016 International Conference on Autonomous Agents & Multiagent Systems10.5555/2936924.2937099(1200-1208)Online publication date: 9-May-2016
  • (2015)Formalization of Weak Emergence in Multiagent SystemsACM Transactions on Modeling and Computer Simulation10.1145/281550226:1(1-25)Online publication date: 23-Sep-2015
  • (2013)Formalization of emergence in multi-agent systemsProceedings of the 1st ACM SIGSIM Conference on Principles of Advanced Discrete Simulation10.1145/2486092.2486122(231-240)Online publication date: 19-May-2013
  • (2011)An agent-based cognitive mapping system for sales opportunity analysisExpert Systems with Applications: An International Journal10.1016/j.eswa.2010.12.01338:6(7016-7028)Online publication date: 1-Jun-2011
  • (2011)Multi-agent role allocationAutonomous Agents and Multi-Agent Systems10.1007/s10458-010-9127-422:2(317-355)Online publication date: 1-Mar-2011
  • (2009)On the significance of synchroneity in emergent systemsProceedings of The 8th International Conference on Autonomous Agents and Multiagent Systems - Volume 110.5555/1558013.1558075(449-456)Online publication date: 10-May-2009
  • (2005)Requirements of an integrated formal method for intelligent swarmsProceedings of the 10th international workshop on Formal methods for industrial critical systems10.1145/1081180.1081196(125-133)Online publication date: 5-Sep-2005

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