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Learning Attentional Communication for Multi-Agent Cooperation

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Communication could potentially be an effective way for multi-agent cooperation. However, information sharing among all agents or in predefined communication architectures that existing methods adopt can be problematic. When there is a large number of agents, agents cannot differentiate valuable information that helps cooperative decision making from globally shared information. Therefore, communication barely helps, and could even impair the learning of multi-agent cooperation. Predefined communication architectures, on the other hand, restrict communication among agents and thus restrain potential cooperation. To tackle these difficulties, in this paper, we propose an attentional communication model that learns when communication is needed and how to integrate shared information for cooperative decision making. Our model leads to efficient and effective communication for large-scale multi-agent cooperation. Empirically, we show the strength of our model in a variety of cooperative scenarios, where agents are able to develop more coordinated and sophisticated strategies than existing methods.

Jiechuan Jiang, Zongqing Lu• 2018

Related benchmarks

TaskDatasetResultRank
Cooperative NavigationCooperative Navigation easy
Mean Episode Reward2.51
14
Cooperative NavigationCN MPE hard
Mean Episode Reward2.87
7
Cooperative Navigationmulti-agent particle environment medium
Average Return-2.43
7
Cooperative NavigationCooperative Navigation super_hard
Mean Episode Reward-2.79
7
Cooperative NavigationCN MPE medium
Mean Episode Reward2.55
7
Cooperative NavigationCN MPE super_hard
Mean Episode Reward2.93
7
Cooperative NavigationCooperative Navigation hard
Mean Episode Reward-2.75
7
Multi-agent coordinationMulti-agent search-and-rescue coordination task
Bits per Episode2.20e+6
7
Multi-agent cooperationSMAC 1o_10b_vs_1r hard
Win Rate0.00e+0
7
Multi-agent cooperationSMAC 1o_10b_vs_1r super_hard
Win Rate0.00e+0
7
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