航空计算技术2024,Vol.54Issue(4) :100-105.

基于微服务架构的航空产品协同设计平台架构设计

Design of Aircraft Engine Collaborative Design Platform Based on Microservices

车艳鑫 常鸿雯 张鑫 黄晨雨
航空计算技术2024,Vol.54Issue(4) :100-105.

基于微服务架构的航空产品协同设计平台架构设计

Design of Aircraft Engine Collaborative Design Platform Based on Microservices

车艳鑫 1常鸿雯 1张鑫 1黄晨雨1
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作者信息

  • 1. 中国航发沈阳发动机研究所,辽宁 沈阳 110000
  • 折叠

摘要

为加速航空发动机跨专业协同设计,缩短研发周期,节省研制成本,针对当前型号研制过程中存在的协同过程隐性化导致监控回溯较困难、计划驱动模式导致数据迭代过程未有效管理、设计流程未有效积累和复用等问题,设计了一种基于微服务架构的航空发动机协同设计平台.在快速响应协同设计功能需求方面,研究是平台构建过程中使用微服务架构技术,满足航空发动机型号快速迭代的需求.基于上述研究工作,自主开发了高效、轻量、跨专业的协同设计平台,结果表明:平台实现了轻量的型号协同流程,使隐形的流程变得显性化,实现设计及仿真工具的集成,实现协同设计数据的版本管理,能够有效提升协同的效率与质量,为数字工程的推进提供工具支撑.

Abstract

In order to accelerate the cross discipline collaborative design of aeroengines,shorten the re-search and development cycle,and save the research and development cost,an aeroengine collaborative design platform based on microservices architecture was designed to solve the problems that the recessive collaborative process in the current model development process leads to difficult monitoring and back-tracking,the plan driven mode leads to ineffective management of data iteration process,and the design process can not be effectively accumulated and reused.In terms of Functional requirement of rapid re-sponse collaborative design,the research is to use microservices architecture technology in the platform construction process to meet the requirements of rapid iteration of aeroengine models.Based on the above research work,an efficient,lightweight,and interdisciplinary collaborative design platform has been inde-pendently developed.The results show that the platform has achieved lightweight model collaborative processes,made invisible processes explicit,integrated design and simulation tools,and achieved version management of collaborative design data.It can effectively improve the efficiency and quality of collabora-tion,and provide tool support for the advancement of digital engineering.

关键词

航空产品/协同设计平台/微服务架构/数字工程

Key words

aircraft engine/collaborative design platform/microservices architecture/digital engineering

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基金项目

航空发动机专项(JG10-XX-XX-XXX)

出版年

2024
航空计算技术
中国航空工业西安航空计算技术研究所

航空计算技术

CSTPCD
影响因子:0.316
ISSN:1671-654X
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