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Connectivity preserved nonlinear time-delayed multiagent systems using neural networks and event-based mechanism

机译:连接使用神经网络和基于事件的机制保留的非线性时间延迟多算系统

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Abstract This paper studies how to preserve connectivity for nonlinear time-delayed multiagent systems using event-based mechanism. By using the idea of divide-and-conquer, we divide the distributed controller into five parts to deal with different requirements of the time-delayed multiagent systems, such as eliminating the negative effects of time delays, preserving connectivity, learning the unknown dynamics and achieving consensus. To reduce the communication times among the agents, a centralized event-based protocol is introduced and an event-triggered function is devised to control the frequency of the communication without Zeno behavior. The technique of $$sigma $$ σ -functions is used to exclude the singularity of the established distributed controller. In the simulation example, the results demonstrate the validity of our developed methodology.
机译:摘要本文研究了如何使用基于事件的机制来保护非线性时延多算系统的连接。 通过使用划分和征服的思想,我们将分布式控制器划分为五个部分以处理时间延迟多读系统的不同要求,例如消除时间延迟的负面影响,保持连接,学习未知动态和学习未知动态 实现共识。 为了减少代理中的通信时间,引入了集中的基于事件的协议,并设计了事件触发的功能,以控制没有ZENO行为的通信频率。 $$ sigma $$Σ-functions的技术用于排除已建立的分布式控制器的奇点。 在仿真示例中,结果表明了我们开发方法的有效性。

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