基于MBSE的动车组牵引变流器研究

U292.91+4; 为解决动车组牵引变流器设计面临的信息庞杂和更改困难的问题,文章引入基于模型的系统工程(MBSE)方法,采用建模语言SysML和建模工具Magic Draw重点分析动车组牵引变流器全生命周期的设计阶段,从需求分析出发对设计阶段进行建模.在建模过程中将牵引变流器需求分为非功能需求和功能需求,非功能需求主要分析环境因素对动车组牵引变流器使用的影响并结合建模工具Magic Draw创建需求图和参数图进行仿真验证;功能需求主要创建活动图、时序图来分析牵引变流器电流调节功能.在此基础上,分析牵引变流器子系统并且创建相应模块定义图和内部模块图来展示牵引变流器架构,建立追溯矩阵确保功能分...

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Published in机车电传动 no. 6; pp. 133 - 139
Main Authors 王保民, 杨九河, 周锦祥, 王海芳, 车军
Format Journal Article
LanguageChinese
Published 天津职业技术师范大学 汽车与交通学院,天津 300222%中国铁路成都局集团有限公司,四川 成都 610082%兰州交通大学 机电工程学院,甘肃 兰州 730070%中车唐山机车车辆有限公司,河北 唐山 063035 2024
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ISSN1000-128X
DOI10.13890/j.issn.1000-128X.2024.03.103

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Abstract U292.91+4; 为解决动车组牵引变流器设计面临的信息庞杂和更改困难的问题,文章引入基于模型的系统工程(MBSE)方法,采用建模语言SysML和建模工具Magic Draw重点分析动车组牵引变流器全生命周期的设计阶段,从需求分析出发对设计阶段进行建模.在建模过程中将牵引变流器需求分为非功能需求和功能需求,非功能需求主要分析环境因素对动车组牵引变流器使用的影响并结合建模工具Magic Draw创建需求图和参数图进行仿真验证;功能需求主要创建活动图、时序图来分析牵引变流器电流调节功能.在此基础上,分析牵引变流器子系统并且创建相应模块定义图和内部模块图来展示牵引变流器架构,建立追溯矩阵确保功能分析没有遗漏.结果表明,将MBSE思想应用到动车组牵引变流器设计能够通过模型间的关联性解决基于文档的传统模式中存在的信息查找和更改困难等不足,有效支持牵引变流器内部的设计信息从"文本"到"模型"的转变.
AbstractList U292.91+4; 为解决动车组牵引变流器设计面临的信息庞杂和更改困难的问题,文章引入基于模型的系统工程(MBSE)方法,采用建模语言SysML和建模工具Magic Draw重点分析动车组牵引变流器全生命周期的设计阶段,从需求分析出发对设计阶段进行建模.在建模过程中将牵引变流器需求分为非功能需求和功能需求,非功能需求主要分析环境因素对动车组牵引变流器使用的影响并结合建模工具Magic Draw创建需求图和参数图进行仿真验证;功能需求主要创建活动图、时序图来分析牵引变流器电流调节功能.在此基础上,分析牵引变流器子系统并且创建相应模块定义图和内部模块图来展示牵引变流器架构,建立追溯矩阵确保功能分析没有遗漏.结果表明,将MBSE思想应用到动车组牵引变流器设计能够通过模型间的关联性解决基于文档的传统模式中存在的信息查找和更改困难等不足,有效支持牵引变流器内部的设计信息从"文本"到"模型"的转变.
Abstract_FL This paper focuses on applying model-based systems engineering(MBSE)methodology to the design of EMU traction converters,to address challenges stemming from an abundance of information and complexities in modification.The study initially un-covered the whole life cycle process of EMU traction converters,leveraging the modeling language SysML and the modeling tool Mag-ic Draw,and concentrated on modeling the design stage based on an analysis digging into requirements.The requirements of traction converters were categorized into non-functional requirements and functional ones during the modeling process.The non-functional re-quirements were analyzed to assess the impact of environmental factors on the operation of EMU traction converters,and were verified through simulations incorporating diagrams of requirements and parameters created using the modeling tool Magic Draw.The analysis of functional requirements focused on the current regulation function of traction converters,through creating activity diagrams and tim-ing diagrams.The subsequent analysis delved into the traction converter subsystems and presented the traction converter architecture by creating corresponding module definition diagrams and internal module diagrams.Additionally,a traceability matrix was established to ensure no omission in the functional analysis.The study findings endorse the application of the MBSE methodology,particularly through model correlations,as an effective solution to challenges in the design of EMU traction converters,such as complexities in in-formation search and modifications in the traditional document-based mode.Hence,the proposed approach effectively facilitates the transformation of internal design information of traction converters from a textual representation to a model-based format.
Author 杨九河
王保民
车军
周锦祥
王海芳
AuthorAffiliation 天津职业技术师范大学 汽车与交通学院,天津 300222%中国铁路成都局集团有限公司,四川 成都 610082%兰州交通大学 机电工程学院,甘肃 兰州 730070%中车唐山机车车辆有限公司,河北 唐山 063035
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Author_FL WANG Baomin
ZHOU Jinxiang
WANG Haifang
YANG Jiuhe
CHE Jun
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DocumentTitle_FL Research and analysis of traction converter for EMU based on MBSE
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Issue 6
Keywords 系统工程
MBSE
牵引变流器
SysML
model-based systems engineering(MBSE)
Magic Draw
traction converter
systems engineering
EMU
动车组
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PublicationTitle_FL Electric Drive for Locomotives
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Snippet U292.91+4; 为解决动车组牵引变流器设计面临的信息庞杂和更改困难的问题,文章引入基于模型的系统工程(MBSE)方法,采用建模语言SysML和建模工具Magic...
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Title 基于MBSE的动车组牵引变流器研究
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