首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >Consensus in Fractional-Order Multi-Agent Systems With Intermittence Sampled Data Over Directed Networks
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Consensus in Fractional-Order Multi-Agent Systems With Intermittence Sampled Data Over Directed Networks

机译:具有在定向网络中的间歇性采样数据的分数级多代理系统中的共识

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摘要

The leaderless consensus of fractional-order multi-agent systems (FOMASs) by intermittence sampled data control method is investigated in this brief, for which a distributed intermittence sampled data control protocol is presented to reduce the updating rate and working time of controllers. Subsequently, the Laplace transform and the stability theory are utilized to derive some necessary and sufficient consensus criteria that show the relations among the fractional order, sampling period, communication width, coupling strengths, and network topology. What is more, it can be discovered that both the communication width and sampling period have the lower and upper bounds for given networks to attain leaderless consensus. Finally, a numerical simulation example is presented to prove the theoretical results.
机译:在本简要介绍了间歇性数据控制方法的分数级多助手系统(FOMASS)的无线共识,其中提出了一种分布式间歇采样数据控制协议以减少控制器的更新率和工作时间。随后,利用拉普拉斯变换和稳定性理论来得出一些必要和充分的共识标准,该标准显示了分数阶,采样周期,通信宽度,耦合强度和网络拓扑之间的关系。更重要的是,可以发现通信宽度和采样周期都具有给定网络的较低和上限,以获得不利的共识。最后,提出了一种数值模拟示例以证明理论结果。

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