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Effective Response Time Verify of Active Decoy Against Anti-Ship Missile Using DEVS Simulation

DEVS 시뮬레이션을 사용한 능동기만기의 대함미사일에 대한 효과적인 대응시간 검증

  • Choi, Soon-Ho (College of Information and Communication Engineering Sungkyunkwan University) ;
  • Cho, Tae-Ho (College of Information and Communication Engineering Sungkyunkwan University)
  • 최순호 (성균관대학교 정보통신대학) ;
  • 조대호 (성균관대학교 정보통신대학)
  • Received : 2015.08.03
  • Accepted : 2015.09.15
  • Published : 2015.10.25

Abstract

Abroad warships are confronted with various menaces. The most critical threat of the warship is an Anti-Ship Missile (ASM). The ASM is able to be launched at a variety of environments and platforms. The ASM can evades conventional naval radar systems and electronic countermeasure techniques for providing a fatal damage to the warship. To cope with the ASM, an active decoy is an effective method to minimize the direct damage to the warship. The active decoy increases survivability of the warship because the ASM can lure pursuit of the active decoy instead of the warship. In this paper, our proposed method verifies an available response time of the active decoy to deal with the ASM using the active decoy of the warship in marine environments. We defined models of the warship, the ASM, and the active decoy, and executed simulation by combining the models. By the simulation result, the proposed method demonstrated the superiority of the mobile active decoy of the response time decoy among various active decoys, and estimated a protection area to prevent the ASM according the response time of the mobile active decoy against the ASM.

해상에서 운용되는 함정은 다양한 위협에 둘러싸여 있는데 그중에서도 가장 위협적인 것은 다양한 환경과 플랫폼에서 발사가 가능한 대함미사일이다. 대함미사일은 함정의 레이더나 전자전 장비에 대하여 회피 기능까지 보유하고 있어 함정에 치명적인 피해를 줄 수 있다. 대함미사일에 의한 함정에 직접적인 피해를 줄이는 능동기만기는 대함미사일이 함정 대신 기만기를 추적하도록 유인하여 함정의 생존성을 높이는 장비로써 대함미사일 방어에 효과적인 방법이다. 본 논문에서 제안 기법은 해상 환경에서 함정의 능동기만기를 사용하여 대함미사일에 대응하기 위해 시뮬레이션 방법론인 DEVS (Discrete Event System Specification)를 적용하여 능동기만기의 효과적인 운용 시간을 검증한다. 이를 위해 함정, 대함미사일, 그리고 능동기만기를 각각 모델링하고 정의된 모델을 결합하여 시뮬레이션을 수행하였다. 시뮬레이션 수행을 통해 도출된 결과는 수동형 기만기, 체공 고정형 기만기, 그리고 이동형 능동기만기 중에서 이동형 능동기만기의 운용 시간 우수성을 검증했고, 대함미사일로부터 함정 방어를 위한 이동형 능동기만기의 운용 시간에 따른 방어구역을 추정하였다.

Keywords

References

  1. S. J. Ko, D. H. Park, "An Examination on Overseas Technology Trend and Domestic Development Pattern of the Naval Combat Management System", Korea Association of Defense Industry Studies, vol. 16, No. 2, pp. 237-258, Dec. 2009.
  2. J. W. Yu, H. S. Lee, J. G. Kim, S. S. Kim, "Chaff echo identification and removal using support vector machine", Proceedings of KIIS Spring Conference, vol. 23, no. 1, 2013.
  3. H. S. Lee, J. G. Kim, J. W. Yu, Y. S. Jeong, S. S. Kim, "A Studuy on Chaff Echo Detection using AdaBoost Algorithm and Radar Data", Journal of Korean Institute of Intelligent Systems, vol. 23, no. 6, pp. 545-550, Dec. 2013. https://doi.org/10.5391/JKIIS.2013.23.6.545
  4. Y. J. Moon, S. J. Kwon, "Requirement Analysis of Propulsion System for Active Anti-Ship Missile Decoy", Journal of the Korean Society of Propulsion Engineers, vol. 17, no. 4, pp. 2, Mar. 2013.
  5. S. J. Hwang, "A Position of a Anti-Air Weapon System for Flighting Ship's Self-Defense Effectiveness Enhancement", Journal of the Korea Institute of Military Science and Technology, vol. 9, no. 3, pp. 41-43, Sep. 2009.
  6. D. C. Shin, J. H. Lee, S. C. Ryu, "A Research on Naval Electronic Warfare System Engagement HILS Technology", Journal of the Korea Institute of Military Science and Technology, vol. 13, no. 5, pp. 785-792, Oct. 2010.
  7. Anastasia Razinkova, B. J. Kang, H. C. Cho, H. T. Jeon, "Constant Altitude Flight Control for Quadrotor UAVs with Dynamic Feedforward Compensation", International Journal of Fuzzy Logic and Intelligent System, vol. 14, no. 1, pp. 26-33, Mar. 2014. https://doi.org/10.5391/IJFIS.2014.14.1.26
  8. George W. Stimoson, Introduction to Airborne Radar 2nd edition, Apr. 2003.
  9. K. H. Kim, Weapons of Mass Destruction, Ministry of national Defense, Apr. 2007.
  10. H. N. Yoon, KIDA Defense Weekly, no. 1279, Korea Institute for Defense Analysis, Dec. 2009.
  11. B. J. Lee, "Intelligent Kalman Filter for Tracking an Anti-Ship Missile", Proceedings of KFIS Conference 2004, vol. 14, no. 1, pp. 563-566, Apr. 2004.
  12. Tan, Tun-Hou, "Effectiveness of Off-Board Active Decoys Against Anti-Shipping Missiles", Naval Postgraduate School, pp.1-43, Sep. 1996.
  13. T. Y. Park, "Arming of surface ship", Available : http://demaclub.tistory.com/2289, Jul. 2014, [Accessed: Jul. 16, 2015]
  14. Y. I. Song, A Study on the Effectivenss Measures of Ship Combat Systems in the Composite Warfare, vol. 53, no. 1, pp. 163-192, Apr. 2010.
  15. Sherman Frankel, "Defeating Theater Missile Defense Radars with Active Decoys", Science & Global Security, vol 6, pp.333-355, 1997. https://doi.org/10.1080/08929889708426443
  16. I. K. Lee, D. C. Park, T. S. Ryu, J. S. Im, O. H. Cho, H. C. Kang. Radar Engineering and Applications in Electronic Warfare, KEES, Aug. 2006.
  17. S. D. Chi, J. S. Park, J. S. Lee, H. K. Kim, K. C. Jung, J. R. Jeong, "Network Security Modeling and Simulation Using SES/MB Framework", vol. 11, no. 2, Journal of Korea Institute of Information Security & Cryptology, Mar. 2001.
  18. Y. S. Han, "A Study on the Curriculum Design Engine using a SES/DEVS", Journal of Engineering Education Research, vol. 16, no. 5, pp. 18-23, Sep. 2013. https://doi.org/10.18108/jeer.2013.16.5.18
  19. S. S. Park, D. W. Kim, K. Y. Choi, J. H. Kim, C. K. Ryoo, "Development of Engagement Simulation Program between ASM with IIR Seeker and Defense System", J. of The Korean Society for Aeronautical and Space Sciences, vol. 41, no. 5, pp. 373-382, 2013. https://doi.org/10.5139/JKSAS.2013.41.5.373
  20. Yuliang Qin, Yongqiang Cheng, Hongqian Wang, Xiang Li, "Information Extraction for Multi-Mode Seeker Automatic Target Acquistion", International Conference on Information and Automation, pp. 10-14, Jun. 2008.
  21. H. M. Park, "Special Knowledge <165> Frequency", Available : http://life.joins.com/news/article/article.asp?Total_ID=4193702&ctg=12&sid=5558, May. 2010. [Accessed: Jul. 16, 2015]
  22. Thomas G. Mahnken, The Cruise Missile Chanllenge, CSBA, Mar. 2005.