Topology-Based and Event-Oriented Approach to Simulation of Cyber- Physical Systems

A simulation model for cyber.physical systems (CPSs) was presented. The model was developed by the method of combination of topology-based and event-oriented that could be used to simulate systems with routing flexibility, service.selection flexibility and service- mode flexibility overall by integr...

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Bibliographic Details
Published in东华大学学报(英文版) Vol. 33; no. 6; pp. 991 - 996
Main Author 郑君玺 张平 金培根 李方 杜广龙
Format Journal Article
LanguageEnglish
Published School of Computer Science and Engineering, South China University of Technology, Guangzhou 510001, China 2016
School of Information Engineering, Guangdong Mechanical and Electronical College, Guangzhou 510515, China%School of Computer Science and Engineering, South China University of Technology, Guangzhou 510001, China
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Summary:A simulation model for cyber.physical systems (CPSs) was presented. The model was developed by the method of combination of topology-based and event-oriented that could be used to simulate systems with routing flexibility, service.selection flexibility and service- mode flexibility overall by integrating the strategies related. The validity of the model has been verified by two extensive experiments.
Bibliography:31-1920/N
topological-based; event-oriented; cyber-physical systems; discrete event systems., simulation model
ZHENG Jun-xi,ZHANG Ping, JIN Pei-gen, LI Fang, DU Guang-long ( 1 School of Computer Science and Engineering, South China University of Technology, Guangzhou 510001, China 2 School of Information Engineering, Guangdong Mechanical and Electronical College, Guangzhou 510515, China)
A simulation model for cyber.physical systems (CPSs) was presented. The model was developed by the method of combination of topology-based and event-oriented that could be used to simulate systems with routing flexibility, service.selection flexibility and service- mode flexibility overall by integrating the strategies related. The validity of the model has been verified by two extensive experiments.
ISSN:1672-5220