系统工程与电子技术2024,Vol.46Issue(1) :162-172.DOI:10.12305/j.issn.1001-506X.2024.01.19

基于DoDAF的低慢小飞行器综合处置体系架构设计

Design for integrated disposal system architecture of low-slow-small aerocraft based on DoDAF

卫继承 张娟 杨文雅 马岚岭 张航
系统工程与电子技术2024,Vol.46Issue(1) :162-172.DOI:10.12305/j.issn.1001-506X.2024.01.19

基于DoDAF的低慢小飞行器综合处置体系架构设计

Design for integrated disposal system architecture of low-slow-small aerocraft based on DoDAF

卫继承 1张娟 1杨文雅 1马岚岭 1张航2
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作者信息

  • 1. 西北工业大学力学与土木建筑学院,陕西西安 710129
  • 2. 上海烜翊科技有限公司,上海 200233
  • 折叠

摘要

针对低慢小飞行器在综合处置中威胁环境复杂、多学科关键技术交互密切等现状,引入美国国防部体系架构框架(Department of Defense Architecture Framework,DoDAF)对低慢小飞行器综合处置体系进行顶层设计.对其视角视图进行"补充、裁剪、融合",定义了各视角的建模顺序及各视角下视图的建模方法,形成一套面向各类复杂体系分析与设计问题完备的构建方法及一套体系架构快速设计方法.并以一种新型多元载荷协同作战的低慢小飞行器综合处置体系进行建模与仿真,验证了该方法能为低慢小飞行器的综合处置作战提供系统全面的描述和可靠的概念模型支撑、该模型可为作战体系架构设计与装备技术发展提供牵引.

Abstract

In view of the complex threat environment and close interaction of multi-disciplinary key technologies in the integrated disposal of low-slow-small aerocraft,Department of Defense Architecture Framework(DoDAF)is introduced to design the top-level of the integrated disposal system for low-slow-small aerocraft."supplements,cuts,merges"the viewpoint and view of the framework,the modeling sequence of each viewpoint and the modeling method of each view are defined.And a set of methods for various complex system analysis and design problem and a set of rapid system design methods are established.In addition,a new type of low-slow-small aerocraft integrated disposal system is modeled and simulated for multi-load coordinated operations,verifying that the proposed method can provide a comprehensive system description and reliable conceptual model support for the integrated disposal of low-slow-small aerocraft and the model can provide traction for the design of combat system architecture and the development of equipment technology.

关键词

低慢小飞行器/美国国防部体系架构框架/基于模型的体系工程/架构设计

Key words

low-slow-small aerocraft/Department of Defense Architecture Framework(DoDAF)/model-based system of system engineering(MBSoSE)/architecture design

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基金项目

国家自然科学基金(11672237)

出版年

2024
系统工程与电子技术
中国航天科工防御技术研究院 中国宇航学会 中国系统工程学会

系统工程与电子技术

CSTPCD北大核心
影响因子:0.847
ISSN:1001-506X
参考文献量12
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