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Coalition structure generation: dynamic programming meets anytime optimization

Published: 13 July 2008 Publication History

Abstract

Coalition structure generation involves partitioning a set of agents into exhaustive and disjoint coalitions so as to maximize the social welfare. What makes this such a challenging problem is that the number of possible solutions grows exponentially as the number of agents increases. To date, two main approaches have been developed to solve this problem, each with its own strengths and weaknesses. The state of the art in the first approach is the Improved Dynamic Programming (IDP) algorithm, due to Rahwan and Jennings, that is guaranteed to find an optimal solution in O(3n), but which cannot generate a solution until it has completed its entire execution. The state of the art in the second approach is an anytime algorithm called IP, due to Rahwan et aI., that provides worst-case guarantees on the quality of the best solution found so far, but which is O(nn). In this paper, we develop a novel algorithm that combines both IDP and IP, resulting in a hybrid performance that exploits the strength of both algorithms and, at the same, avoids their main weaknesses. Our approach is also significantly faster (e.g. given 25 agents, it takes only 28% of the time required by IP, and 0.3% of the time required by IDP).

References

[1]
Dang. V. D.; Dash. R. K.; Rogers. A.; and Jennings. N. R. 2006. Overlapping coalition formation for efficient data fusion in multi-sensor networks. In AAAI-06, 635-640.
[2]
Larson. K., and Sandholm, T. 2000. Anytime coalition structure generation: an average case study. J. Exp. and Theor. Artif Intell. 12(1 ):23-42.
[3]
Rahwan. T., and Jennings, N. R. 2008. An improved dynamic programming algorithm for coalition structure generation. In AAMAS-08.
[4]
Rahwan. T.; Ramchurn. S. D.; Dang. V. D.; and Jennings. N. R. 2007a. Near-optimal anytime coalition structure generation. In IJCAI-07. 2365-2371.
[5]
Rahwan. T.; Ramchurn. S. D.; Giovannucci. A.; Dang. V. D.; and Jennings. N. R. 2007b. Anytime optimal coalition structure generation. In AAAI-07. 1184-1190.
[6]
Sandholm. T. w.; and Lesser. V. R. 1997. Coalitions among computationally bounded agents. Artificial Intelligence 94(1):99-137.
[7]
Sandholm. T. W.; Larson. K.; Andersson. M.; Shehory. O.; and Tohme, F. 1999. Coalition structure generation with worst case guarantees. Artificial Intelligence 111(1-2):209-238.
[8]
Sen. S., and Dutta. P. 2000. Searching for optimal coalition structures. In Proceedings of the Fourth International Conference on Multiagent Systems. 286-292.
[9]
Shehory. O., and Kraus. S. 1998. Methods for task allocation via agent coalition formation. Artificial Intelligence 101(1-2):165-200.
[10]
Skiena. S. S. 1998. The Algorithm Design Manual. New York. USA: Springer.
[11]
Yeh. D. Y. 1986. A dynamic programming approach to the complete set partitioning problem. BIT Numerical Mathematics 26(4):467-474.

Cited By

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  • (2017)Algorithms for Graph-Constrained Coalition Formation in the Real WorldACM Transactions on Intelligent Systems and Technology10.1145/30409678:4(1-24)Online publication date: 24-Feb-2017
  • (2016)A Synergy Coalition Group based Dynamic Programming Algorithm for Coalition FormationProceedings of the 2016 International Conference on Autonomous Agents & Multiagent Systems10.5555/2936924.2937012(588-596)Online publication date: 9-May-2016
  • (2015)How to Form a Task-Oriented Robust TeamProceedings of the 2015 International Conference on Autonomous Agents and Multiagent Systems10.5555/2772879.2772931(395-403)Online publication date: 4-May-2015
  • Show More Cited By

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Published In

cover image Guide Proceedings
AAAI'08: Proceedings of the 23rd national conference on Artificial intelligence - Volume 1
July 2008
596 pages
ISBN:9781577353683

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  • Association for the Advancement of Artificial Intelligence

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AAAI Press

Publication History

Published: 13 July 2008

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Cited By

View all
  • (2017)Algorithms for Graph-Constrained Coalition Formation in the Real WorldACM Transactions on Intelligent Systems and Technology10.1145/30409678:4(1-24)Online publication date: 24-Feb-2017
  • (2016)A Synergy Coalition Group based Dynamic Programming Algorithm for Coalition FormationProceedings of the 2016 International Conference on Autonomous Agents & Multiagent Systems10.5555/2936924.2937012(588-596)Online publication date: 9-May-2016
  • (2015)How to Form a Task-Oriented Robust TeamProceedings of the 2015 International Conference on Autonomous Agents and Multiagent Systems10.5555/2772879.2772931(395-403)Online publication date: 4-May-2015
  • (2014)Fostering Cooperation through Dynamic Coalition Formation and Partner SwitchingACM Transactions on Autonomous and Adaptive Systems10.1145/25679289:1(1-31)Online publication date: 1-Mar-2014
  • (2012)On coalition formation with sparse synergiesProceedings of the 11th International Conference on Autonomous Agents and Multiagent Systems - Volume 110.5555/2343576.2343608(223-230)Online publication date: 4-Jun-2012
  • (2011)Randomized coalition structure generationArtificial Intelligence10.1016/j.artint.2011.08.002175:16-17(2061-2074)Online publication date: 1-Oct-2011
  • (2010)A Network Flow Approach to Coalitional GamesProceedings of the 2010 conference on ECAI 2010: 19th European Conference on Artificial Intelligence10.5555/1860967.1861183(1017-1018)Online publication date: 4-Aug-2010
  • (2010)Anytime dynamic programming for coalition structure generationProceedings of the 9th International Conference on Autonomous Agents and Multiagent Systems: volume 1 - Volume 110.5555/1838206.1838407(1411-1412)Online publication date: 10-May-2010
  • (2010)A distributed algorithm for anytime coalition structure generationProceedings of the 9th International Conference on Autonomous Agents and Multiagent Systems: volume 1 - Volume 110.5555/1838206.1838342(1007-1014)Online publication date: 10-May-2010
  • (2010)Coalition formation with spatial and temporal constraintsProceedings of the 9th International Conference on Autonomous Agents and Multiagent Systems: volume 3 - Volume 310.5555/1838186.1838191(1181-1188)Online publication date: 10-May-2010
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