Authors
Junhua Zhou, 1. Beijing Complex Product Advanced Manufacturing Engineering Research Center, Beijing Simulation Center, Beijing 100854, China;;2. State Key Laboratory of Intelligent Manufacturing System Technology, Beijing Institute of Electronic System Engineering, Beijing 100854, China;;3. Science and Technology on Space System Simulation Laboratory, Beijing Simulation Center, Beijing 100854, China;
Junjie Xue, 1. Beijing Complex Product Advanced Manufacturing Engineering Research Center, Beijing Simulation Center, Beijing 100854, China;;2. State Key Laboratory of Intelligent Manufacturing System Technology, Beijing Institute of Electronic System Engineering, Beijing 100854, China;;
Heyu Li, 1. Beijing Complex Product Advanced Manufacturing Engineering Research Center, Beijing Simulation Center, Beijing 100854, China;;2. State Key Laboratory of Intelligent Manufacturing System Technology, Beijing Institute of Electronic System Engineering, Beijing 100854, China;;
Ji Hang, 1. Beijing Complex Product Advanced Manufacturing Engineering Research Center, Beijing Simulation Center, Beijing 100854, China;;2. State Key Laboratory of Intelligent Manufacturing System Technology, Beijing Institute of Electronic System Engineering, Beijing 100854, China;;
Tingyu Lin, 1. Beijing Complex Product Advanced Manufacturing Engineering Research Center, Beijing Simulation Center, Beijing 100854, China;;2. State Key Laboratory of Intelligent Manufacturing System Technology, Beijing Institute of Electronic System Engineering, Beijing 100854, China;;3. Science and Technology on Space System Simulation Laboratory, Beijing Simulation Center, Beijing 100854, China;
Guoqiang Shi, 1. Beijing Complex Product Advanced Manufacturing Engineering Research Center, Beijing Simulation Center, Beijing 100854, China;;2. State Key Laboratory of Intelligent Manufacturing System Technology, Beijing Institute of Electronic System Engineering, Beijing 100854, China;;3. Science and Technology on Space System Simulation Laboratory, Beijing Simulation Center, Beijing 100854, China;
Abstract
Abstract: The main development process of the digital twin technology is reviewed and its necessity for the weapon system is put forward. The definition and composition of the digital twin for the weapon system is given and its application architecture and key technologies, such as the construction of the digital thread, bi-directional collaborative simulation and control, intelligent autonomous evolution, digital twin operation support based on the container-simulation-cloud, et al, are analyzed. The preliminary research and practice of some key technologies is expounded, and the future research directions are summarized and looked forward to.
Recommended Citation
Zhou, Junhua; Xue, Junjie; Li, Heyu; Hang, Ji; Lin, Tingyu; and Shi, Guoqiang
(2020)
"Thinking on Digital Twin for Weapon System,"
Journal of System Simulation: Vol. 32:
Iss.
4, Article 1.
DOI: 10.16182/j.issn1004731x.joss.20-0089
Available at:
https://dc-china-simulation.researchcommons.org/journal/vol32/iss4/1
DOI Link
https://doi.org/10.16182/j.issn1004731x.joss.20-0089
Recommended Citation
Zhou Junhua, Xue Junjie, Li Heyu, Ji Hang, Lin Tingyu, Shi Guoqiang. Thinking on Digital Twin for Weapon System[J]. Journal of System Simulation, 2020, 32(4): 539-552.
Corresponding Author
Guoqiang Shi,
DOI
10.16182/j.issn1004731x.joss.20-0089
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