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F-DCS: FMI-based Distributed CPS Simulation Framework with a Redundancy Reduction Algorithm

Title
F-DCS: FMI-based Distributed CPS Simulation Framework with a Redundancy Reduction Algorithm
Author
조인휘
Keywords
cyber-physical system; electric vehicle; distributed co-simulation; functional mock-up interface; zero crossing; driving cycle
Issue Date
2020-01
Publisher
MDPI
Citation
SENSORS, v. 20, no. 1, article no. 252
Abstract
A cyber physical system (CPS) is a distributed control system in which the cyber part and physical part are tightly interconnected. A representative CPS is an electric vehicle (EV) composed of a complex system and information and communication technology (ICT), preliminary verified through simulations for performance prediction and a quantitative analysis is essential because an EV comprises a complex CPS. This paper proposes an FMI-based distributed CPS simulation framework (F-DCS) adopting a redundancy reduction algorithm (RRA) for the validation of EV simulation. Furthermore, the proposed algorithm was enhanced to ensure an efficient simulation time and accuracy by predicting and reducing repetition patterns involved during the simulation progress through advances in the distributed CPS simulation. The proposed RRA improves the simulation speed and efficiency by avoiding the repeated portions of a given driving cycle while still maintaining accuracy. To evaluate the performance of the proposed F-DCS, an EV model was simulated by adopting the RRA. The results confirm that the F-DCS with RRA efficiently reduced the simulation time (over 30%) while maintaining a conventional accuracy. Furthermore, the proposed F-DCS was applied to the RRA, which provided results reflecting real-time sensor information.
URI
https://www.mdpi.com/1424-8220/20/1/252https://repository.hanyang.ac.kr/handle/20.500.11754/160959
ISSN
1424-8220
DOI
10.3390/s20010252
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > COMPUTER SCIENCE(컴퓨터소프트웨어학부) > Articles
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