The trajectory simulation of an anti-submarine missile motion

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Authors

  • Nguyen Hanh Hoan (Corresponding Author) Institute of Missile, Academy of Military Science and Technology
  • Nguyen Van Hoa Institute of Missile, Academy of Military Science and Technology
  • Dang Van Hung Institute of Missile, Academy of Military Science and Technology
  • Le Tuan Anh Institute of Missile, Academy of Military Science and Technology

DOI:

https://doi.org/10.54939/1859-1043.j.mst.102.2025.147-155

Keywords:

Anti-submarine missile; Torpedo; Air trajectory; Underwater trajectory.

Abstract

 This paper analyses an anti-submarine missile's aerial motion, water entry motion and under- water motion. It establishes equations of motion for each phase and presents the ballistic characteristics of each section. According to the model, a trajectory is simulated. The method and the result provide an efficacious guarantee for the operational employment of an anti-submarine missile. It thus provides a basis for the design and calculation of an anti-submarine missile.

References

[1]. Herman P. Caster, “Equations of motion for flight simulation of the asroc missile”, Naval Postgraduate School, (1992).

[2]. REN Bin, WEN Zhi-wen, YANG Zhi-dong “Simulation of Torpedo Air Trajectory Based on Dual-Euler Method”, Journal of unmanned undersea systems, Vol. 27 No. 4, (2019).

[3]. XING Guo-qiang, LIU Xu-hui, WANG Gai-di, “Identification of Aerodynamic Parameter and Its Influence on Attitude Change of Anti-submarine missile in Parachute-Free Section”, Journal of Unmanned Undersea Systems, 459-463, (2017). doi: 10.11993/j.issn.2096-3920.2017.05.011

[4]. ZHANG Xue-feng, PAN Guang, “Underwater Trajectory Design of Rocket-assisted Torpedo”, Journal of Unmanned Undersea Systems, 15(4): 011-13, (2007). doi: 10.11993/j.issn.1673-1948.2007.04.003

[5]. Zhang XU-wen, “The torpedo Trajectory and Design”, [M]. Xi’an: Northwestern Polytechnic University Press, (2003).

[6]. Stephen M. V, “Probability of Kill for VLA ASROC Torpedo Launch”, Naval Postgraduate School, (2019).

[7]. J. Potion, “Testing a new model of ram-air parachute inflation”, The Aeronautical Journal, v.101, No.1007, (1997). DOI: https://doi.org/10.1017/S0001924000066161

[8]. Knippenberg, W. A., et al. “Simulating anti-submarine warfare using MANA”. Diss. TNO Defence, Safety and Security, (2014).

[9]. Lian, Yong Qing, Bing Tian, and Shu Zong Wang. "The simulation of submarine-launched missile out-water movement based on matlab/simulink." Applied Mechanics and Materials 182: 1328-1332, (2012). DOI: https://doi.org/10.4028/www.scientific.net/AMM.182-183.1328

[10]. Kamel, Mohamed M., et al. "Simulation and modelling of flight missile dynamics and autopilot analysis" IOP Conference Series: Materials Science and Engineering. Vol. 610. No. 1. IOP Publishing, (2019). DOI: https://doi.org/10.1088/1757-899X/610/1/012033

[11]. Siouris, George M. “Missile guidance and control systems”. Springer Science & Business Media, (2006).

[12]. Zhi-wen, W. E. N., Y. A. N. G. Zhi-dong, and C. A. I. Wei-jun. "Simulation research of torpedo-parachute system under influence of meteorological wind." Journal of Underwater Unmanned Systems 27.5: 589-594, (2019).

[13]. Е. С. Шахиджанов, “От торпеды до противолодочного комплекса”, Вестник российской академии наук, том 66 № 11, (2006).

[14]. https://armrus.ru

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Published

15-04-2025

How to Cite

[1]
D. H. Nguyen Hanh, Nguyen Van Hoa, Dang Van Hung, and Le Tuan Anh, “The trajectory simulation of an anti-submarine missile motion ”, JMST, vol. 102, no. 102, pp. 147–155, Apr. 2025.

Issue

Section

Mechanics & Mechanical engineering