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C^4ISR需求模型及一体化描述 被引量:3

C^4ISR requirements model and integrative description
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摘要 研究了 C^4ISR 需求要素及层次化 C^4ISR 需求模型.探讨了节点、活动和信息在节点-关系模型、信息模型与 IDEFO 活动模型相互之间的映射关系,包括节点映射、活动映射、信息需求映射和约束数据映射,使节点,活动和信息在 C^4ISR 需求模型中匹配起来;在此基础上,提出 C^4ISR 需求一体化层次建模方法.最后,通过一个案例示例以说明了所提出方法的有效性,实用性. A new method for modeling C^4 ISR requirements is studied, which can serve as guideline in the modeling of C^4 ISR requirements orienting operational domain. Considering the hierarchy of C^4 ISR, the hierarchy of C^4 ISR requirements comes down to the hierarchy of node-relation, the hierarchy of activity, and the hierarchy of information. The methods of modeling the hierarchy of cgISR requirements are studied. In order to make the models integrative, the mapping relations of the basic elements in different models are discussed. Node mapping, activity mapping, IERs (information exchange requirements ) mapping, and restriction data mapping are analyzed, respectively. At the same time, the corresponding arithmetic is presented. Therefore, node, information and activity are matching among node-relation model, information model, and IDEF0 activity model. Based these, integrative hierarchy modeling process for C4ISR requirements is brought out. The C^4 ISR requirements models can be regarded as an integrative model. At last, an example shows that the method is highly helpful and feasible.
出处 《系统工程学报》 CSCD 北大核心 2008年第5期519-525,共7页 Journal of Systems Engineering
关键词 C^4 ISR 需求 要素 节点-关系模型 活动模型 信息模型 C^4 ISR requirements element node-relation model activity model information model
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参考文献15

  • 1Levis A H, Wagenhals L W. C^4 ISR Architectures Ⅰ: Developing a Process for C4 ISR Architecture Design [ R ]. Fairfax, Virginia: George Mason University, System Architectures Laboratory, C^3I Center, MSN 4D2, 2000.
  • 2C^4ISR Architectures Working Group. C^4ISR Architecture Framework Version 1.0 [ R]. Washington, D. C. : Department of Defense, 1996.
  • 3C^4ISR Architectures Working Group. C^4ISR Architecture Framework Version 2.0 [R]. Washington, D. C. : Department of Defense, 1997.
  • 4DoD Architectures Working Group. DoD Architecture Framework Version 1.0[R]. Washington, D. C. : Department of Defense, 2004
  • 5Wagenhals L W, Shin I, Kim D, et al. C^4ISR Architectures Ⅱ: A Structured Analysis Approach to Architecture Design [ R]. Fairfax, Virginia: George Mason University, System Architectures Laboratory, C^3I Center, MSN 4D2, 2000.
  • 6Bienvenu, P P, Kim D, Levis A H. C^4ISR Architectures Ⅲ: An Object-Oriented Approach to Architecture Design [R]. Fairfax, Virginia: George Mason University, System Architectures Laboratory, C^3I Center, MSN 4D2, 2000.
  • 7黄力,罗爱民,罗雪山,谭跃进.C^4ISR体系结构研究综述[J].系统工程与电子技术,2003,25(12):1497-1500. 被引量:16
  • 8罗爱民,罗雪山,黄力.C^3I系统体系结构框架研究[J].系统工程理论与实践,2003,23(6):86-90. 被引量:14
  • 9仲辉,邱涤珊,余滨,易先清.支持C4ISR系统研究的一种集成建模方法[J].计算机仿真,2003,20(7):55-58. 被引量:4
  • 10段采宇,余滨,马满好.ONCD辅助描述工具设计与实现[J].计算机工程与设计,2004,25(8):1405-1408. 被引量:1

二级参考文献82

  • 1陆汝钤,金芝,万荣林,夏幼明.基于领域知识的需求信息获取[J].软件学报,1996,7(3):137-144. 被引量:26
  • 2HaumerP PohlK WeidenhauptK.Requirements elicitation and validation with real world scenes[J].Technical Report CREWS Report(Germany),1998,:98-06.
  • 3美国国防部C^4ISR体系结构工作组.C^4ISR体系结构框架2.0版[M].北京:电子科学研究院工程总体部编译,1999..
  • 4吴晓华 余滨 陈洪辉.IDEFO与Petri网在C4ISR系统仿真建模中的应用[A]..现代作战与军事运筹(军事运筹学学术会议论文集)[C].,2001.470—477.
  • 5国防科技大学C^3I系统研究中心.C^3I系统分析设计方法及辅助工具研究报告[R].,1999..
  • 6C4ISR Architectures Working Group. C4ISR architecture framework 2.0[Z].
  • 7Alexander Levis H,Lee Wagenhals. C4ISR architecture framework implementation[Z].
  • 8Alexander Levis H, Lee Wagenhals. Developing a process for C4ISR architecture design[Z].
  • 9Department of Defense. Joint technical architecture user guide and component JTA management[7]
  • 10The Standish Group. Software Chaos. The Standish Group International, Inc, 1994.

共引文献158

同被引文献21

  • 1余滨,段采宇,饶德虎.C^4ISR系统军事需求描述概念模型[J].国防科技大学学报,2008,30(2):112-117. 被引量:7
  • 2裴波,王聪,徐小岩.C^4ISR系统需求获取的方法研究[J].军事运筹与系统工程,2004,18(1):7-11. 被引量:11
  • 3沈如松,张育林.基于UML和Petri网的武器装备体系需求分析方法[J].系统工程理论与实践,2006,26(1):136-140. 被引量:16
  • 4Shenhar A J, Bonen Z. The New Taxonomy of Systems:Toward an Adaptive Systems Engineering Framework[J]. IEEE Transactions on Systems, Man and Cybernetics, 1997, 27 (2) : 137-145.
  • 5Dean D F Command and Control System Requirements Generation: Reuse by Pragmatism-a Case Study [R]. DERA (UK), 1999.
  • 6DoD Architectures Working Group. DoD Architecture Framework Version 1. 0 [ R]. Washington, D.C. : Department of Defense, 2004.
  • 7Sowa J F, Zachman J A. Extending and Formalizing the Framework for Information Systems Architecture [J]. IBM Systems Journal, 1992, 31(3): 590-616.
  • 8CJCSI 3170. 01F. Joint Capabilities and Integration Development System [S]. Washington, D. C. Organization of the Joint Chiefs of Staff, 2007.
  • 9Gorschek T,Wohlinl C. Requirements Abstraction Model [J]. Requirements Engi-neering Volume 11, Numberl, 2006,11(1) :23-25.
  • 10Robertson S, Robertson J. Mastering the Requirements Process (2nd Edition)[M]. Addison- Wesley Professional, 2006.

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