Distributed Adaptive Control for Nonlinear Heterogeneous Multi-agent Systems with Different Dimensions and Time Delay

Bo Qin, Shuo Yang, Yongqing Fan
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Abstract

A distributed neural network adaptive feedback control system is designed for a class of nonlinear multi-agent systems with time delay and nonidentical dimensions. In contrast to previous works on nonlinear heterogeneous multi-agent with the same dimension, particular features are proposed for each agent with different dimensions, and similar parameters are defined, which will be combined parameters of the controller. Second, a novel distributed control based on similarity parameters is proposed using linear matrix inequality (LMI) and Lyapunov stability theory, establishing that all signals in a closed loop system are eventually ultimately bounded. The consistency tracking error steadily decreases to a field with a small number of zeros. Finally, simulated examples with different time delays are utilized to test the effectiveness of the proposed control technique.
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非线性异构多智能体系统的分布式自适应控制
针对一类具有时滞和非同维的非线性多智能体系统,设计了分布式神经网络自适应反馈控制系统。与以往对同维非线性异构多智能体的研究不同,本文针对不同维的每个智能体提出了特定的特征,并定义了相似的参数,这些参数将作为控制器的组合参数。其次,利用线性矩阵不等式(LMI)和Lyapunov稳定性理论,提出了一种基于相似参数的分布式控制方法,建立了闭环系统中所有信号最终都是有界的。一致性跟踪误差稳步减小到只有少量零的字段。最后,利用不同时滞的仿真实例验证了所提控制技术的有效性。
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