Discrete thermodynamic Cucker–Smale model with time-delay on a general digraph

IF 0.5 4区 数学 Q3 MATHEMATICS
Chen Wu, Jiu‐Gang Dong
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引用次数: 1

Abstract

We study the discrete-time thermodynamic Cucker–Smale (TCS) model with a communication time-delay on a general digraph containing a spanning tree. In the TCS model, the mutual interactions not only are “mechanical” but also are affected by the “temperature effect.” It always takes time for information to be received between agents due to finite propagation speed effects. Transmission delays are inevitable and should be incorporated into flocking modeling. In this paper, we provide sufficient frameworks for flocking to the discrete TCS model, which are formulated in terms of initial configuration, network topology, and system parameters. In our proposed frameworks, we show that the TCS model exhibits exponential flocking convergence.
广义有向图上具有时滞的离散热力学cucker - small模型
研究了包含生成树的一般有向图上具有通信时延的离散时间热力学Cucker-Smale (TCS)模型。在TCS模型中,相互作用不仅是“机械的”,而且还受到“温度效应”的影响。由于有限的传播速度效应,agent之间接收信息总是需要一定的时间。传输延迟是不可避免的,应该纳入群集建模。在本文中,我们为离散TCS模型提供了足够的框架,这些框架是根据初始配置,网络拓扑和系统参数制定的。在我们提出的框架中,我们证明了TCS模型具有指数群集收敛性。
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来源期刊
CiteScore
0.70
自引率
20.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: Journal of Mathematical Physics, Analysis, Geometry (JMPAG) publishes original papers and reviews on the main subjects: mathematical problems of modern physics; complex analysis and its applications; asymptotic problems of differential equations; spectral theory including inverse problems and their applications; geometry in large and differential geometry; functional analysis, theory of representations, and operator algebras including ergodic theory. The Journal aims at a broad readership of actively involved in scientific research and/or teaching at all levels scientists.
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