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Journal of Graphics ›› 2024, Vol. 45 ›› Issue (2): 347-354.DOI: 10.11996/JG.j.2095-302X.2024020347

• Digital Design and Manufacture Special • Previous Articles     Next Articles

Modeling and implementation of EMU traction system based on top down design

WANG Haifang(), ZHANG Lei, WANG Xin, SUN Minghui, XUE Lianmin   

  1. CRRC Tangshan Rolling Stock Co. LTD, Tangshan Hebei 063000, China
  • Received:2024-01-05 Revised:2024-03-11 Online:2024-04-30 Published:2024-04-30
  • About author:WANG Haifang (1981-), senior engineer, undergraduate. Her main research interest covers development design of rail transit vehicles. E-mail:sjc-wanghaifang@tangche.com
  • Supported by:
    National Key Research and Development Plan(2020YFB1708100)

Abstract:

With the increasing complexity of rail transit products and the development of intelligent level, the design of electric multiple units (EMU) traction systems demands more effective requirement analysis methods, more reliable modeling analysis methods, positive traceability design methods, and high-quality implementation forms. Taking the traction system of EMU as the research object, this study utilized the requirements analysis model based on system modeling language (SysML) language and combined it with a modeling analysis method based on the standard requirement-function-logical-physical (RFLP). Starting from the design requirements of the traction system, a complete use case analysis was carried out, leading to the creation of a functional model of the traction system, including both the architecture model and the state machine model. The interactive information between the traction system, external system, and internal subsystems was displayed through block definition diagram and internal block diagram. The operation scenarios of the traction system were realized through UI interfaces, and the state changes of the traction system during operation were displayed. Functional logic simulation of the traction system was realized, and a positive traceable design and implementation scheme of the traction system was formed. The design method based on model-based systems engineering (MBSE) was applied to the design process of EMU, thereby providing forward design guidance for the design of EMU.

Key words: electric multiple units, traction system, MBSE, SysML, RFLP

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