4.6 Article

Coordinated Control of Networked Nonlinear Multiagent Systems Using Variable Horizon Learning Predictors via Cloud Edge Computing

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCNS.2022.3181549

关键词

Cloud computing; multiagent systems; networked control; nonlinear systems; predictive control

资金

  1. National Natural Science Foundation of China [62173255, 62188101]
  2. Center for Control Science and Technology, Southern University of Science and Technology

向作者/读者索取更多资源

This article investigates the coordinated control problem of networked nonlinear multiagent systems using cloud edge computing. A mist-fog-cloud predictive control scheme is proposed to compensate for communication delays and achieve desired coordination performance. The analysis results in the conditions of simultaneous consensus and stability of the closed-loop system, and an example demonstrates the effectiveness of the scheme.
Networked multiagent systems use network technology to realize the interconnection, intercommunication, and mutual control of things. The coordinated control problem of networked nonlinear multiagent systems via cloud edge computing is investigated in this article. A mist-fog-cloud predictive control scheme is proposed for the coordinated control of complex large-scale networked multiagent systems by making use of the advantages of cloud edge computing. This scheme actively compensates for communication delays and achieves desired coordination performance of individual agents. Variable horizon learning predictors are presented to predict the outputs of the unknown nonlinear dynamical agents within different horizons. The design of coordinated control optimizes a performance index function presented to measure the coordination between agents. The analysis on a networked nonlinear multiagent system using the mist-fog-cloud predictive control scheme results in the conditions of simultaneous consensus and stability of the entire closed-loop system. An example demonstrates the effectiveness of the proposed scheme.

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