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http://dx.doi.org/10.9709/JKSS.2018.27.1.033

Engagement Level Simulator Development for Wire-Guided Torpedo Performance Analysis  

Cho, Hyunjin (Department of Electrical Engineering, Korea Naval Academy)
Abstract
This paper introduces the simulation concepts and technical approach of wire-guided torpedo performance analysis simulator, as a consequence, provide a framework for understanding overall attack procedures and effectiveness of tactics to torpedo operator. It described the mathematical models of simulation components and weapon engagement principle, especially it derived the closed-form solution of time consumption and leading angle problem of torpedo attack situation based on geographical assumption. In addition, it adopted the proportional navigation guidance at final stage of torpedo attack and also consider the tradeoff relation between target ship speed(propeller noise level) and detection probability, so that it improves the fidelity of physical realism. Simulator is developed with high degree of freedom in the perspective of tactical situation, and it helps user to understand the overall situation and tactical effectiveness.
Keywords
Wire Guided Torpedo; Engagement level M&S; MOE; Naval tactics;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
연도 인용수 순위
1 DoD 5000.59 (1995), "Modeling and Simulation (M&S) Master plan"
2 Kim, Taekyoo (2014) "System Operational Performance Analysis for Wire-Guided Torpedo" Journal of the Korea Society for Simulation, 23(2), 7-15. (김태규. "선유도어뢰 체계운용성능분석 기법." 한국시뮬레이션학회논문지 23.2 (2014): 7-15.)   DOI
3 Ku, B., Y. Lee, J. Park, S. Chung, W. Hong, W. Kim, M. Lim and H. Ko, "Robust ship wake search method in the target evasion environment," Journal of the Korea Institute of Military Science and Technology, Vol.12, No.1, 2009, 8-17. (구본화, 이영현, 박정민, 정석문, 홍우영, 김우식, 임묘택, 고한석, "회피 기동에 강인한 수상 항적 탐색방법", 한국군사과학기술학회지, Vol.12, No.1,2009, 8-17)
4 Mjedle, A. (1977) "A Homing Torpedo: The Effect of the Tactical Situation and the Torpedo Parameters on the Torpedo Effectiveness", Master Thesis, Naval Postgraduate School (USA).
5 Pak, J.M. (2008) "Effectiveness Analysis of an Acoustic Homing Torpedo", Master Thesis, Korea University (박정민. "음향 유도 어뢰의 효과도 분석." 석사학위논문, 고려대학교 (2008))
6 Pak, Jung-Min, B. Ku, Y. Lee, D. Ryu, W. Hong, M. Lim, H. Ko. (2011). "Effectiveness Analysis for a Lightweight Torpedo Considering Evasive Maneuvering and TACM of a Target" Journal of the Korea Society for Simulation, 20(4), 1-11. (박정민, 구본화, 이영현, 류동기, 홍우영, 고한석, 임묘택, "표적 회피기동과 어뢰음향대항체계를 고려한 경어뢰의 효과도 분석", 한국시뮬레이션학회 논문지, Vol.20, No.4, 2011, 1-11))   DOI
7 Piplani, Lalit K., Joseph G. Mercer, and Richard O. Roop. "Systems Acquisition Manager's Guide for the Use of Models and Simulations", Report of the DSMC 1993-1994 Military Research Fellows. Defense Systems Management College Press, 1994.
8 Shin, Ji-hwan. (2007). "On the Development of Authoritative Representations of Torpedo Systems for Engagement Level Simulation". Journal of the Korea Society for Simulation, 16(3), 19-28. (신지환. (2007). 교전수준 어뢰체계 표준모델 개발 방안 연구. 한국시뮬레이션학회논문지, 16(3), 19-28.)
9 Shin, MyoungIn, H. Cho, J. Lee, J. Lim, S. Lee, W. Kim, W. Kim, W. Hong. (2016). "Effectiveness Analysis for Survival Probability of a Surface Warship Considering Static and Mobile Decoys" Journal of the Korea Society for Simulation, 25(3), 53-63. (신명인, 조현진, 이진호, 임준석, 이석진, 김완진, & 홍우영. (2016). 부유식 및 자항식 기만기의 혼합 운용을 고려한 수상함의 생존율에 대한 효과도 분석. 한국시뮬레이션학회 논문지, 25 (3), 53-63.)   DOI
10 Urick, R.J., Principles of underwater sound 3rd, MacGraw-Hill, 1983
11 Lee, Simyong, S.Go (2016) "Constructive Simulation and Experimentation for Supporting Light Weight Torpedo Operational Tactics Study" Journal of the Korea Institute of Military Science and Technology, 19(6), 769-778 (이심용, 고승렬, 경어뢰 운용전술연구지원을 위한 구성시뮬레이션 및 모의실험 / 군사과학기술학회지 / 2016.12)   DOI
12 Yoon, H, "A Study on the Detection Effectiveness of Torpedo", Report of Agency for Defence Development, NWSD-519-960331, 1996
13 Zarchan, Paul. Tactical and strategic missile guidance. American Institute of Aeronautics and Astronautics, 2012.