Research on the construction method of command and Control Network based on edge weighting

Author:

Wang Jianwei1,Pan Chengsheng1,Shi Jianfeng1

Affiliation:

1. Nanjing University of Information Science and Technology

Abstract

Abstract Aiming at the problem that the traditional command and control network model is difficult to reflect the complex structure of the command and control network, the complex network theory is used to describe the hierarchical structure and correlation between the elements of the command and control network, and an edge weighting method of the command and control network based on the combination of the node's attributes and network attributes is proposed. In this method, the node's attributes mainly consider the factors such as node information transmission capability, task coordination capability between nodes, node distance, and response time. The network attributes are mainly represented by command hierarchy and betweenness, and the three types of nodes in the traditional command and control network model are expanded into five types of nodes. According to the edge weighting method, the commanding edge inside the command and control network, the cooperative edge between the command and control network, and the overstepping command edge are generated. The simulation results show that the characteristic parameters of the command and control network model are better than those of the traditional command and control network, which is more in line with reality. It has small-world and scale-free characteristics, enhances the command coordination ability, and effectively improves the command efficiency of the network.

Publisher

Research Square Platform LLC

Reference23 articles.

1. 1. Zhang LY, Qing DZ, Shen XS, Zhang H, Zhou M, Wang XF (2022) Research on dynamic evolution of complex combat network based on information entropy. Journal of System Simulation 34(12):2605–2618. https://doi.org/10.16182/j.issn1004731x.joss.22-fz0908.

2. 2. Jin C, Zhang ZZ, Zhang H, Ma LJ, Wang XX (2022) Research on Network Architecture and Key Technologies of Intelligent Land Combat Command and Control. Proceedings of the 10th China Command and Control Conference

3. (I) 2022 : 795-800. https://doi.org/10.26914/c.cnkihy.2022.019589.

4. 3. Rong X, Wang Q, Wei T, Li LJ, Ji Z (2014) Design and Implementation of Tactical Internet for General Air Defense Command System. Fire and Command Control vol.39, No.S1, pp:146–148.

5. 4. Lin BX, Xu MX, Chen ZG, Shen YM, Gan WB (2022) Topology analysis of UAV network based on complex network bee colony. Fire and command and control vol.47, No.1, pp:38–42 + 49.

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