Construction Technology of Open Command and Control Platform Based on Cloud Native

Aiming at the problems of traditional command and control system, such as closed system, low efficiency of man-machine cooperation and poor scalability, an open command and control system based on cloud native technology is proposed. Firstly, the expression model of commander’s operation...

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Bibliographic Details
Main Author: Fan Liangyou, Yao Xiaoqiang, Wang Gang, Liu Wei, He Sheng
Format: Article
Language:zho
Published: Editorial Office of Aero Weaponry 2022-08-01
Series:Hangkong bingqi
Subjects:
Online Access:https://www.aeroweaponry.avic.com/fileup/1673-5048/PDF/2022-00036.pdf
Description
Summary:Aiming at the problems of traditional command and control system, such as closed system, low efficiency of man-machine cooperation and poor scalability, an open command and control system based on cloud native technology is proposed. Firstly, the expression model of commander’s operational intention is studied based on the combination of Boyd’s loop (OODA) and business process modeling notation (BPMN), which realizes multi-intention parallel execution and multi-strategy conflict resolution, and makes commander’s operational intention deeply couple with command and control system operation. Then, based on micro-services, service mesh, message middleware and other technologies, the basic framework based on cloud native theory is built to realize the rapid and safe expansion of basic services. In order to rapidly expand the atomic services that constitute the commander’s decision, a rapid development, deployment and delivery system of services is designed based on DevOps. Finally, the feasibility and reliability of the system are verified by the case of fire-concentrated shooting. Compared with the traditional command and control system, the open command and control platform can realize rapid and flexible system expansion, support flexible editing of operational processes and tactics. This technology can provide a solution for the command and control system from closed to open.
ISSN:1673-5048