系统工程与电子技术 ›› 2024, Vol. 46 ›› Issue (2): 640-648.doi: 10.12305/j.issn.1001-506X.2024.02.27

• 系统工程 • 上一篇    

基于DoDAF的航空装备智能保障系统体系结构建模

苗学问, 董骁雄, 钱征文, 胡杨, 李牧东   

  1. 中国人民解放军93184部队, 北京 100038
  • 收稿日期:2022-11-11 出版日期:2024-01-25 发布日期:2024-02-06
  • 通讯作者: 董骁雄
  • 作者简介:苗学问(1977—), 男, 正高级工程师, 博士, 主要研究方向为装备综合保障、武器装备论证
    董骁雄(1990—), 男, 工程师, 博士, 主要研究方向为装备综合保障、备件库存优化
    钱征文(1984—), 男, 高级工程师, 博士, 主要研究方向为武器装备论证
    胡杨(1987—), 男, 高级工程师, 博士, 主要研究方向为健康管理、深度学习
    李牧东(1987—), 男, 高级工程师, 博士, 主要研究方向为武器装备论证、武器系统
  • 基金资助:
    国家社会科学基金(2022-SKJJ-C-035)

Architecture modeling of aviation equipment intelligent support system based on DoDAF

Xuewen MIAO, Xiaoxiong DONG, Zhengwen QIAN, Yang HU, Mudong LI   

  1. Unit 93184 of the PLA, Beijing 100038, China
  • Received:2022-11-11 Online:2024-01-25 Published:2024-02-06
  • Contact: Xiaoxiong DONG

摘要:

保障系统结构建模是发展和构建新一代航空装备智能保障系统的重要基础。航空装备保障系统涉及保障要素多、交联关系复杂, 需从系统工程的角度开展顶层设计, 并采用统一的结构框架对其体系结构进行建模表征。引入美国国防部架构框架(Departmeant of Defense Architecture Framework, DoDAF)体系结构框架, 提出基于“概念-任务-能力”的体系结构开发序列, 构建航空装备智能保障系统的能力、保障活动、各保障要素的信息交互及组织关系等视图模型, 得到“能力层-需求层-技术层”之间的对应关系。该方法能够全面地描述航空装备智能保障系统体系结构, 提高不同保障要素之间的互操作性, 并将其转化为具体的设计要求, 可为航空装备智能保障系统开发提供支持。

关键词: 航空装备, 智能保障系统, 美国国防部架构框架, 基于模型的系统工程

Abstract:

The architecture modeling of support system is an important foundation for the development and construction of a new generation of aviation equipment intelligent support system. The aviation equipment support system involves many support elements and complex cross-linking relationships, it is necessary to carry out top-level design from the perspective of system engineering, and use a unified structural framework to model and characterize its architecture. The Departmeant of Defense Architecture Framework (DoDAF) architecture framework is introduced, and the architecture development sequence based on "concept-task-capability" is proposed. The view models of capabilities, support activities, information interaction and organization relationship of each support element of the aviation equipment intelligent support system are constructed, and the corresponding relationship between "capability layer-demand layer-technology layer" is obtained. This method can comprehensively describe the architecture of aviation equipment intelligent support system, improve the interoperability among different support elements, and translate it into specific design requirements, which can provide support for the development of aviation equipment intelligent support system.

Key words: aviation equipment, intelligent support system, Department of Defense Architecture Framework (DoDAF), model-based systems engineering (MBSE)

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