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A novel optimal bipartite consensus control scheme for unknown multi-agent systems via model-free reinforcement learning

Applied Mathematics and Computation · 2019 · Vol. 369 · pp. 124821–124821
Zhinan PengJiangping HuKaibo ShiRui LuoRui HuangBijoy K. GhoshJiuke Huang

Abstract

In this paper, the optimal bipartite consensus control (OBCC) problem is investigated for unknown multi-agent systems (MASs) with coopetition networks. A novel distributed OBCC scheme is proposed based on model-free reinforcement learning method to achieve OBCC, where the agent’s dynamics are no longer required. First, The coopetition networks are applied to establish the cooperative and competitive interactions among agents, and then the OBCC problem is formulated by introducing local neighbor bipartite consensus errors and performance index functions (PIFs) for each agent. Second, in order to obtain the OBCC laws, a policy iteration algorithm (PIA) is employed to learn the solutions to discrete-time (DT) Hamilton-Jacobi-Bellman (HJB) equations. Third, to implement the proposed methods, we adopt a data-driven actor-critic-based neural networks (NNs) framework to approximate the control laws and the PIFs, respectively, in an online learning manner. Finally, some simulation results are given to demonstrate the effectiveness of the developed approaches.

Adaptive Dynamic Programming ControlNeural Networks Stability and SynchronizationDistributed Control Multi-Agent SystemsReinforcement learningBipartite graphComputer scienceHamilton–Jacobi–Bellman equationMathematical optimizationScheme (mathematics)Artificial neural networkMulti-agent systemOptimal controlArtificial intelligence

Funding

  • National Natural Science Foundation of China
  • Graduate Innovation Project of North Minzu University
Citations
298
FWCI
15.37
field-weighted impact
References
57
Percentile
99%
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Citations per year
References
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IEEE Transactions on Automatic Control · 2005 · 6,488 citations
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IEEE Transactions on Automatic Control · 2004 · 12,614 citations
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IEEE Transactions on Neural Networks · 2001 · 774 citations
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