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作 者:Yu Bing An Baoran Zhao Shicao 余冰;安宝冉;赵士操(中国工程物理研究院计算机应用研究所,四川绵阳621900)
机构地区:[1]Institute of Computer Application,China Academy of Engineering Physics,Mianyang 621900,China
出 处:《系统仿真学报》2024年第12期2797-2812,共16页Journal of System Simulation
摘 要:The development process of complex equipment involves multi-stage business processes,multi-level product architecture,and multi-disciplinary physical processes.The relationship between its system model and various disciplinary models is extremely complicated.In the modeling and integration process,extensive customized development is needed to realize model integration and interoperability in different business scenarios.Meanwhile,the differences in modeling and interaction between different modeling tools make it difficult to support the consistent representation of models in complex scenarios.To improve the efficiency of system modeling and integration in complex business scenarios,a system modeling and integration method was proposed.This method took the Sys ML language kernel as the core and system model function integration as the main line.Through the technical means of model view separation,abstract operation interface,and model view configuration,the model modeling and integration of multi-user,multi-model,multi-view,and different business logic in complex business scenarios were realized.复杂装备研制过程涉及多阶段业务流程、多层级产品架构,以及多学科物理过程,其系统模型与各学科模型关联极为复杂。模型建模与集成过程中需要大量的定制化开发以实现不同业务场景下的模型集成与贯通。不同建模工具之间模型建模与交互的差异性难以支撑复杂场景下模型的一致性表达。为提升复杂业务场景下系统模型建模与集成效率,提出一种以SysML语言内核为核心、以系统模型功能集成为主线的系统模型建模与集成方法。该方法通过模型视图分离、抽象操作接口以及模型视图组态等技术手段,实现复杂业务场景下多用户、多模型、多视图以及不同业务逻辑下的模型建模与集成。
关 键 词:SYSML model-based system engineering(MBSE) SERVICE graphical modeling V-business
分 类 号:TP391[自动化与计算机技术—计算机应用技术]
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