Volume 41 Issue 5
May  2015
Turn off MathJax
Article Contents
RAN Huaming, ZHOU Rui, DONG Zhuoning, et al. Cooperative jamming-detecting-attacking task allocation in air combat[J]. Journal of Beijing University of Aeronautics and Astronautics, 2015, 41(5): 911-918. doi: 10.13700/j.bh.1001-5965.2014.0325(in Chinese)
Citation: RAN Huaming, ZHOU Rui, DONG Zhuoning, et al. Cooperative jamming-detecting-attacking task allocation in air combat[J]. Journal of Beijing University of Aeronautics and Astronautics, 2015, 41(5): 911-918. doi: 10.13700/j.bh.1001-5965.2014.0325(in Chinese)

Cooperative jamming-detecting-attacking task allocation in air combat

doi: 10.13700/j.bh.1001-5965.2014.0325
  • Received Date: 06 Jun 2014
  • Rev Recd Date: 25 Aug 2014
  • Publish Date: 20 May 2015
  • To solve task allocation problem of cooperative jamming in air combat, according to jamming power, jamming frequency bands and jamming style of our aircraft together with radar working power, working frequency bands, anti-jamming style of enemy aircraft, advantage of jamming power, jamming frequency, and jamming style were established. Considering the jamming capability of our aircraft and air combat capability of both sides, the total jamming advantage was established, and cooperative jamming task allocation model was built. According to the distance performance of enemy aircraft after jamming and air combat situation for both sides, detecting capability and attacking capability of our aircraft to enemy aircraft were studied, and cooperative detecting and attacking task allocation model was set up. Genetic algorithm was used to optimize and solve those cooperative task allocation problems. The simulation results demonstrate that those models can accomplish cooperative jamming task allocation, cooperative detecting and attacking task allocation.

     

  • loading
  • [1]
    Kim J,Hespanha J P.Cooperative radar jamming for groups of unmanned air vehicles[C]//Proceedings of the IEEE Conference on Decision and Control.Piscataway,NJ:IEEE Press,2004,1:632-637.
    [2]
    Anderson T J,Mathiasmeier K J.A strategy for assessing air-borne electronic attack platform survivability[C]//Proceedings of the 49th Structures,Structural Dynamics and Materials Conference.Reston:AIAA,2008:1-8.
    [3]
    郭凤娟,张安,曹璐.自卫干扰对无人机敏感性的影响研究[J].计算机工程与应用,2011,47(2):220-222. Guo F J,Zhang A,Cao L.Research on influence of SSJ on sensitivity of UAV[J].Computer Engineering and Applications,2011,47(2):220-222(in Chinese).
    [4]
    Lee I H,Bang H.Cooperative control of multiple electronic combat air vehicles for electronic attack[C]//Proceedings of the SICE Annual Conference 2008.Tokyo:Society of Instrument and Control Engineers (SICE),2008:2127-2130.
    [5]
    Purvis K B,Astrom K J,Khammash M.Online control strategies for highly coupled cooperative UAVs[C]//Proceedings of the 2007 American Control Conference.Piscataway,NJ:IEEE Press,2007:3961-3966.
    [6]
    Xu Y,Basset G. Virtual motion camouflage based phantom track generation through cooperative electronic combat air vehicles[J].Automatica,2010,46(9):1454-1461.
    [7]
    Ilaya O,Bil C,Evans M.Distributed and cooperative decision making for multi-UAV systems with application to collaborative electronic warfare[C]//Proceedings of the 7th AIAA Aviation Technology,Integration and Operations Conference.Reston:AIAA,2007:1-13.
    [8]
    Cruz J B Jr,Chen G S,Li D X,et al.Particle swarm optimization for resource allocation in UAV cooperative control[C]//Proceedings of the 2004 AIAA Guidance,Navigation,and Control Conference and Exhibit.Reston:AIAA,2004:2549-2559.
    [9]
    耿涛,张安. 考虑协同电子干扰效果的空战多目标分配[J].火力与指挥控制,2012,37(3):121-123. Geng T,Zhang A.Multi-target assignment based on cooperative electronic jamming effectiveness[J].Fire Control & Command Control,2012,37(3):121-123(in Chinese).
    [10]
    薛羽,庄毅,张友益,等.基于启发式自适应离散差分进化算法的多UCAV协同干扰空战决策[J].航空学报,2013,34(2):343-351. Xue Y,Zhuang Y,Zhang Y Y,et al.Multiple UCAV cooperative jamming air combat decision making based on heuristic self-adaptive discrete differential evolution algorithm[J].Acta Aeronautica et Astronautica Sinica,2013,34(2):343-351(in Chinese).
    [11]
    Adamy D. EW101:电子战基础[M].王燕,朱松,译.北京:电子工业出版社,2009:177-185. Adamy D.EW101:a first course in electronic warfare[M].Translated by Wang Y,Zhu S.Beijing:Electronic Industry Press,2009:177-185(in Chinese).
    [12]
    Adamy D. Introduction to electronic warfare modeling and simulation[M].Boston:Artech House,2003:91-99.
    [13]
    王国玉,汪连栋. 雷达电子战系统数学仿真与评估[M].北京:国防工业出版社,2004:402-408. Wang G Y,Wang L D.Mathematical simulation and evaluation of radar EW system[M].Beijing:National Defence Industry Press,2004:402-408(in Chinese).
    [14]
    朱宝鎏,朱荣昌,熊笑非.作战飞机效能评估[M].2版.北京:航空工业出版社,2006:65. Zhu B L,Zhu R C,Xiong X F.Fighter plane effectiveness assessment[M].2nd ed.Beijing:Aviation Industry Press,2006:65(in Chinese).
    [15]
    肖冰松,方洋旺,夏海宝,等.多机协同对空目标探测与攻击任务的最优分配[J].火力与指挥控制,2011,36(6):19-23. Xiao B S,Fang Y W,Xia H B,et al.Optimal allocation of aerial target detection and attack in cooperative multi-fighter air combat[J].Fire Control & Command Control,2011,36(6):19-23(in Chinese).
    [16]
    崔晓宝,李楠. 机载PD雷达对机动目标探测盲区计算模型研究[J].火控雷达技术,2008,37(3):36-40. Cui X B,Li N.Research on calculation models for detection blind zone of airborne PD radar against maneuvering targets[J].Fire Control Radar Technology,2008,37(3):36-40(in Chinese)
    [17]
    Shima T,Rasmussen S J,Sparks A G,et al.Multiple task assignments for cooperating uninhabited aerial vehicles using genetic algorithms[J].Computers & Operations Research,2006,33(11):3252-3269.

  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views(1217) PDF downloads(827) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return