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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Stochastic Consensus Control Integrated With Performance Improvement: A Consensus Region-Based Approach
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Stochastic Consensus Control Integrated With Performance Improvement: A Consensus Region-Based Approach

机译:随机共识控制与绩效改进一体化:基于共识的地区的方法

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摘要

The randomly switching communication topologies are of particular interest for researchers in the field of consensus control since the communication connection among multiple agents can randomly change with time and space. Following this pattern, this paper models the communication topology with the Markovian randomly switching graphs, since the Markovian chain process is usually used to model the network with Rayleigh fading channel. In this stochastic framework, this paper focuses on the consensus control and performance improvement problems of grouped agents with linear or linearized nominal dynamics. To solve this problem, a class of state-feedback controllers is proposed under the assumption that all the state measurements are available. These controllers are intrinsically distributed since they solely require the relative information between neighboring agents. Moreover, the notion of stochastic consensus region integrated with transient performance is defined to measure the robustness of the proposed controllers with respect to the communication topologies. This paper theoretically shows that these controllers yield unbounded consensus region, which implies that they are well-designed. Furthermore, these controllers can improve the $mathcal consensus, and transient performances of agents subject to external and initial-state disturbances. At the end of this paper, numerical simulations and experiments are performed to verify the theoretical results.
机译:由于多个代理之间的通信连接随着时间和空间随机地改变,因此随机切换通信拓扑对共识控制领域的研究人员特别感兴趣。在此模式之后,本文模拟了Markovian随机切换图的通信拓扑,因为Markovian Chain Process通常用于使用瑞利衰落通道来模拟网络。在这篇随机框架中,本文重点介绍了具有线性或线性化标称动态的分组代理的共识控制和性能改善问题。为了解决这个问题,在假设所有状态测量可用的情况下提出了一类状态反馈控制器。这些控制器本质上分布,因为它们仅需要相邻代理之间的相对信息。此外,与瞬态性能集成的随机共识区域的概念被定义为测量所提出的控制器关于通信拓扑的鲁棒性。本文理论上表明,这些控制器产生了无限的共识区域,这意味着它们是精心设计的。此外,这些控制器可以提高患者的$ MATHCAL共识,以及经过外部和初始状态干扰的瞬态性能。在本文结束时,执行数值模拟和实验以验证理论结果。

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