文章检索

基于扩展粒度计算的防空体系结构超网络模型

  • 邹志刚 ,
  • 刘付显 ,
  • 孙施曼 ,
  • 朱法顺
展开
  • 1.空军工程大学a.防空反导学院,b.装备管理与安全工程学院,西安 710051;
    2.中国民航机场建设集团公司科研基地,北京 100621
邹志刚(1988-),江西抚州人,博士研究生,主要研究方向为防空体系作战运筹分析、防空体系结构优化。

收稿日期: 2013-05-07

  网络出版日期: 2026-06-22

基金资助

国家自然科学基金(61272011);全军军事学研究生课题(2010JY0809-486)

Extended Granular Computing-Based Supernetwork Model for Auti-Air Operational Architecture

  • ZOU Zhi-gang ,
  • LIU Fu-xian ,
  • SUN Shi-man ,
  • ZHU Fa-shun
Expand
  • 1. a. Air and Missile Defense College, b. Equipment Management and Safety Engineering College of AFEU, Xi’an 710051, China;
    2. China Airport Construction Group Corporation, R & D Center, Beijing 100621, Chian

Received date: 2013-05-07

  Online published: 2026-06-22

摘要

提出一种防空体系结构超网络模型。通过将作战对象和连接方式分别抽象为不同信息粒度,给出了防空体系结构的粒度表示;在此基础上,构建防空体系结构分层粒度下的“二层四网”超网络架构;并在架构内,分析防空体系结构内部各功能网络的信息流交互关系。通过扩展粒度计算方法,从纵向研究粗细粒度视角下的防空体系结构分层转化关系,从横向研究防空作战功能网络之间“反射工作流”映射机制,构建出防空体系结构超网络模型。最后通过案例验证了模型能有效揭示防空体系结构内部运行的规律。

本文引用格式

邹志刚 , 刘付显 , 孙施曼 , 朱法顺 . 基于扩展粒度计算的防空体系结构超网络模型[J]. 复杂系统与复杂性科学, 2014 , 11(2) : 24 -35 . DOI: 10.13306/j.1672-3813.2014.02.004

Abstract

A supernetwork model of auti-air operational architecture was presented in the paper as an approach for analyzing the auti-air operational architecture. Firstly, auti-air operational units and links were abstracted into different information granulars, and granular expression of auti-air operational architecture was given; Then a supernetwork frame of auti-air operational architecture was constructed within the layered granular space; Secondly, based on the supernetwork frame, interior information flow in auti-air operational architecture was analyzed with dynamic operating collations, and via extending the granular computing with topology structure, layered transform relations between auti-air operational architecture in different granular scale were analyzed from the vertical viewpoint, then mapping mechanisms with “reflective workflow” among auti-air functional networks were given from the horizontal viewpoint, then the supernetwork model was constructed; Finally, the application case was validated that the model can reveal the interior operating mechanism within auti-air operational architecture in quantify.

参考文献

[1] 王刚, 李为民, 何晶. 区域防空网络化作战体系结构研究[J].现代防御技术, 2003, 31(6):19-23.
Wang Gang, Li Weimin, He Jin. Research on network-centric warfare architecture of zone air defense[J].Modern Defense Technology, 2003, 31(6):19-23.
[2] 杨克巍, 赵青松, 谭跃进,等. 体系需求工程技术与方法[M].北京:科学出版社, 2011.
[3] DoD Architecture Framework Working Group. DoD architecture sramework version 1.5[R].US, Department of Defense, 2007.
[4] Wagenhals L W, Shin I, Kim D. C4ISR architectures II:structured analysis for architecture design[J]. Systems Engineering, 2000, 3(4):248-287.
[5] Albert R, Barabasi A L. Statistical mechanics of complex networks[J]. Reviews of Modem Physics (S0034-6861), 2002, 74(1):47-97.
[6] 金伟新. 体系对抗复杂网络建模与仿真[M].北京:电子工业出版社, 2010.
[7] 王志平,王众托. 超网络理论及其应用[M]. 北京:科学出版社,2008.
[8] Nagurney A, Dong J, Zhang D. A aupply chain network equilibrium model[J]. Transportation Research E, 2002, 38(5):281-303.
[9] Nagurney A, Cruz J, Matsypura D. Dynamics of global supply chain supernetworks[J]. Mathematical and Computer Modelling, 2003, 37(9/10):963-983.
[10] Wang J. A knowledge network constructed by integrating classification, thesaurus, and metadata in digital library[J]. International Information & Library Review, 2003, 35(2-4):383-397.
[11] 雷延军, 李向阳. 武器装备可拓制造“超网络”链模型[J].解放军理工大学学报(自然科学版), 2008, 9(2):165-171.
Lei Yanjun, Li Xiangyang. Model of weapon equipment extended manufacturing “supernetwork” chain[J].Journal of PLA University of Science and Technology, 2008, 9(2):165-171.
[12] Shi F L, Lei Y L, Zhu Y F. A military communication supernetwork structure model for net centric environment[C]. International Conference on Computational and Information Sciences. Wuhan, 2010.
[13] 朱江,刘大伟,李翼鹏. 作战超网络多Agent模型[J].计算机科学, 2012, 39(7):44-47.
Zhu Jiang, Liu Dawei, Li Yipeng. Combat supernetwork multi agent model[J].Computer Science, 2012, 39(7):44-47.
[14] Xia Lu, Xing Qinghua, Zou Zhigang. Supernetwork model of operational system-of-systems for capability emergence[C]//The 31th China Control Conference. Hefei, 2012.
[15] 张铃,张钹. 问题求解理论及应用:商空间粒度计算理论及应用[M].2版.北京:清华大学出版社, 2007.
[16] 王众托. 关于超网络的一点思考[J].上海理工大学学报, 2011, 33(3):229-237.
Wang Zhongtuo. Reflection on supernetwork[J].Journal University of Shanghai for Science and Technology, 2011, 33(3):229-237.
[17] Milo R, Shen-Orr S, Itzkovitz S, et al. Network motifs:simple building blocks of complex networks[J]. Science, 2002, 298:824-827.
[18] Sebastian W. Efficient detection of network motifs[J]. Computational Biology and Bioinformatics, 2006, 3(4):347-359.
[19] Young B W. Future integrated fire control[C]// International Command and Control Research and Technology Symposium(ICCRTS). Virginia, 2005.
[20] Johnson B W, Green J M. Naval network-centric sensor resource mangement[C]//International Command and Control Research and Technology Symposium(ICCRTS). Quebed, 2002.
[21] Anthony H D. Analyzing C2 structures and self-synchronization with simple computational models[C]//International Command and Control Research and Technology Symposium (ICCRTS). Quebed, 2011.
[22] Cares J R. An information age combat model[C]//International Command and Control Research and Technology Symposium (ICCRTS). Washington, 2004.
文章导航

/

〈 〉