Synchronization Between Two Complex Dynamical Networks Using Scalar Signals Under Pinning Control
Chunxia Fan, Guo‐Ping Jiang, Feng-Hua Jiang
Abstract
Chunxia Fan, Guo‐Ping Jiang, Feng-Hua Jiang
Abstract
In this paper, a new scheme for synchronization between two or more complex networks is proposed using scalar signals under pinning control. Unlike common synchronization schemes, where all states of the driving networks are transmitted to the response network and all the nodes in the response network are required to be controlled, here, it is suggested that only a few nodes in the response network are controlled and only a few scalar signals are required to be transmitted from the driving network to the response one. Some criteria for synchronization between two or more complex dynamical networks are given in the form of linear matrix inequality. Furthermore, how to choose the pinned nodes according to the network topology is discussed by a numerical simulation method. Some typical network configurations are simulated, and the simulation results show that the proposed synchronization scheme is effective for the synchronization between two or more complex networks.
OpenAlex reports 69 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In this paper, a new scheme for synchronization between two or more complex networks is proposed using scalar signals under pinning control. Unlike common synchronization schemes, where all states of the driving networks are transmitted to the response network and all the nodes in the response network are required to be controlled, here, it is suggested that only a few nodes in the response network are controlled and only a few scalar signals are required to be transmitted from the driving network to the response one. Some criteria for synchronization between two or more complex dynamical networks are given in the form of linear matrix inequality. Furthermore, how to choose the pinned nodes according to the network topology is discussed by a numerical simulation method. Some typical network configurations are simulated, and the simulation results show that the proposed synchronization scheme is effective for the synchronization between two or more complex networks.
Key concepts: Synchronization (alternating current), Synchronization networks, Scalar (mathematics), Complex network, Topology (electrical circuits), Computer science, Control theory (sociology), Network topology