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离散时间分数阶多自主体系统的时延一致性
引用本文:杨洪勇,郭雷,张玉玲,姚秀明.离散时间分数阶多自主体系统的时延一致性[J].自动化学报,2014,40(9):2022-2028.
作者姓名:杨洪勇  郭雷  张玉玲  姚秀明
作者单位:1.鲁东大学信息与电气工程学院 烟台 264025;
基金项目:国家重点基础研究发展计划(973计划)(2012CB720003),国家自然科学基金(91016004,61273152,61203041,61127007),山东省自然科学基金(ZR2011FM017,ZR2013FL007)资助
摘    要:复杂工作环境中,许多自然现象的个体动力学特性用整数阶方程不能描述,只能用非整数阶(分数阶)动力学来描述个体的运动行为. 本文假设多自主体系统内部连接组成有向加权网络,个体的动态特性应用分数阶动力学方程描述,个体之间数据传输存在通信时延. 应用分数阶系统的Laplace变换和频域理论,研究了离散时间的分数阶多自主体系统的渐近一致性. 应用Hermit-Biehler 定理,研究了具有样本时延的分数阶多自主体系统的运动一致性,得到保证系统稳定的时延的上界阈值. 最后应用一个实例对结论进行了验证.

关 键 词:多自主体系统    分数阶    离散时间    样本时延    一致性
收稿时间:2013-06-17

Delay Consensus of Fractional-order Multi-agent Systems with Sampling Delays
YANG Hong-Yong,GUO Lei,ZHANG Yu-Ling,YAO Xiu-Ming.Delay Consensus of Fractional-order Multi-agent Systems with Sampling Delays[J].Acta Automatica Sinica,2014,40(9):2022-2028.
Authors:YANG Hong-Yong  GUO Lei  ZHANG Yu-Ling  YAO Xiu-Ming
Affiliation:1.School of Information and Electrical Engineering, Ludong University, Yantai 264025;2.School of Automation Science and Electrical Engineering, Beihang University, Beijing 100191
Abstract:In the complex practical environments, many distributed multi-agent systems can not be described with the integer-order dynamics and can only be illustrated with the fractional-order dynamics. In this paper, consensus problems of discrete-time networked fractional-order multi-agent systems with sampling delay are investigated. Firstly, the collaborative control of discrete-time multi-agent systems with fractional-order operator is analyzed in a directed network ignoring sampling delay by using Laplace transform and frequency domain. Then, by applying Hermit-Biehler theorem, the consensus of fractional-order multi-agent systems with sampling delay is studied in a misdirected network. A number of consensus conditions for fractional-order systems with sampling delay are obtained. Numerical simulations are shown to illustrate the utility of the theoretical results.
Keywords:Multi-agent systems  fractional-order  discrete time  sampling delay  consensus
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