4.5 Article

Relay interlayer synchronisation: invariance and stability conditions

期刊

NONLINEARITY
卷 35, 期 1, 页码 681-718

出版社

IOP Publishing Ltd
DOI: 10.1088/1361-6544/ac3c2f

关键词

multiplex network; interlayer synchronisation; asymptotic stability; global stability analysis

资金

  1. Council of Scientific & Industrial Research (CSIR) [09/093(0194)/2020-EMR-I]
  2. Russian Ministry of Science and Education [075-15-2020-808]

向作者/读者索取更多资源

This paper investigates the existence and stability of relay interlayer synchronization in a chain of multiplex networks. The dynamics of nodes in symmetric positions on both sides of the non-identical middlemost layer(s) are identical. Analytical conditions for local and global stability of this synchronization state are derived using the master stability function approach and a suitable Lyapunov function, respectively. The impact of interlayer and intralayer coupling strengths, variations of system parameters in the relay layers, and demultiplexing on the emergence of relay interlayer synchrony are explored through numerical simulations.
In this paper, the existence (invariance) and stability (locally and globally) of relay interlayer synchronisation (RIS) are investigated in a chain of multiplex networks. The local dynamics of the nodes in the symmetric positions layers on both sides of the non-identical middlemost layer(s) are identical. The local and global stability conditions for this synchronisation state are analytically derived based on the master stability function approach and by constructing a suitable Lyapunov function, respectively. We propose an appropriate demultiplexing process for the existence of the RIS state. Then the variational equation transverse to the RIS manifold for demultiplexed networks is derived. In numerical simulations, the impact of interlayer and intralayer coupling strengths, variations of the system parameter in the relay layers and demultiplexing on the emergence of RIS in triplex and pentaplex networks are explored. Interestingly, in this multiplex network, enhancement of RIS is observed when a type of impurity via parameter mismatch in the local dynamics of the nodes is introduced in the middlemost layer. A common time-lag with small amplitude shift between the symmetric positions and central layers plays an important role for the enhancing of relay interlayer synchrony. This analysis improves our understanding of synchronisation states in multiplex networks with nonidentical layers.

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