环境技术2024,Vol.42Issue(12) :6-12.

基于MBSE的通用质量特性一体化建模与分析技术研究

Research on Integrated Modeling and Analysis Technology of General Quality Characteristic based on MBSE

王杰 雷林林 李璇
环境技术2024,Vol.42Issue(12) :6-12.

基于MBSE的通用质量特性一体化建模与分析技术研究

Research on Integrated Modeling and Analysis Technology of General Quality Characteristic based on MBSE

王杰 1雷林林 2李璇1
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作者信息

  • 1. 中国电子科学研究院,北京 100041
  • 2. 工业和信息化部电子第五研究所,广州 511370
  • 折叠

摘要

随着计算机和数字化技术的深入发展,基于模型的系统工程(MBSE)正逐渐成为装备系统数字化设计新范式.面向MBSE研制模式与装备通用质量特性(以下简称"六性")设计要求,工程应用中急需解决"六性"设计分析融入MBSE正向研制流程、功能模型与"六性"设计模型集成应用等问题.本文基于MBSE的方法论和研制流程,研究了复杂装备系统基于MBSE的"六性"一体化设计与分析流程,提出了基于MBSE的"六性"一体化建模方法,研究了基于模型的"六性"自动分析技术,从而实现复杂装备系统MBSE研制模式下"六性"设计分析,为实现装备设计优化和"六性"总体目标提供有力保障.

Abstract

With the advancement of computer and digital technology,model-based systems engineering(MBSE)is emerging as a novel paradigm for the digital design of equipment systems.Faced with the design requirements of the MBSE development mode and equipment general quality characteristic(hereinafter referred to as the"six characteristics"),it is of urgency to address the issues of integrating the design analysis of the"six characteristics"into the forward development process of MBSE,the functional model,and the integrated application of the"six characteristics"design model in engineering applications.Based on the MBSE methodology and development process,this paper investigates the MBSE-based integrated design and analysis process of the"six characteristics"for complex equipment systems,proposes an MBSE-based integrated modeling approach of the"six characteristics",and explores the model-based automatic analysis technology of the"six characteristics",thereby achieving the design and analysis of the"six characteristics"of complex equipment systems under the MBSE development mode.It provides a robust guarantee for realizing the overall goal of equipment design optimization and the"six characteristics".

关键词

MBSE/数字化设计/通用质量特性/一体化建模

Key words

MBSE/digital design/general quality characteristic/integrated modeling

引用本文复制引用

出版年

2024
环境技术
广州电器科学研究院有限公司

环境技术

CSTPCD
影响因子:0.995
ISSN:1004-7204
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