Journal of System Simulation
Abstract
Abstract: LVC training, an important means of military training, has received great attention from military and M&S experts. As the virtual and physical elements become more abundant and deeply integrated, LVC training systems become increasingly complex. Aiming at physical-virtual connection, information interaction, simulation computation, run-time control, etc., this paper designs a cloud-edge collaborative service architecture for LVC training systems (CESA-LVC) by reference to cyber-physical systems and cloud-edge computing architectures. CESA-LVC standardizes the structures of LVC training systems from several aspects of intelligent real-time interconnection, joint simulation computation, training auxiliary service, training cognitive decision, and dynamic configuration optimization. It provides a reference model for the design and development of a service-oriented, flexible deployment, and efficient LVC training system. The paper discusses the key technical problems of joint simulation computation, complex network communication, and complex system control. The prototype system for LVC training spanning three provincial-level regions is realized, and the main indicators of each level of CESA-LVC architecture are verified, which proves the rationality of the architecture design.
Recommended Citation
Yong, Peng; Zhang, Miao; and Hu, Yue
(2023)
"Cloud-Edge Collaborative Service Architecture for LVC Training System,"
Journal of System Simulation: Vol. 35:
Iss.
9, Article 1.
DOI: 10.16182/j.issn1004731x.joss.23-0681
Available at:
https://dc-china-simulation.researchcommons.org/journal/vol35/iss9/1
First Page
1825
Last Page
1836
CLC
TP391.9
Recommended Citation
Peng Yong, Zhang Miao, Hu Yue. Cloud-Edge Collaborative Service Architecture for LVC Training System[J]. Journal of System Simulation, 2023, 35(9): 1825-1836.
DOI
10.16182/j.issn1004731x.joss.23-0681
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