Volume 42 Issue 10
Feb.  2014
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Huang Chenggong, Wu Junhui, Chen Qianrong, Guo Hao, Xu Zhenling, Li Yinghua. Operational effectiveness evaluation for IR/MMW terminal combined guidance missile[J]. Infrared and Laser Engineering, 2013, 42(10): 2702-2706.
Citation: Huang Chenggong, Wu Junhui, Chen Qianrong, Guo Hao, Xu Zhenling, Li Yinghua. Operational effectiveness evaluation for IR/MMW terminal combined guidance missile[J]. Infrared and Laser Engineering, 2013, 42(10): 2702-2706.

Operational effectiveness evaluation for IR/MMW terminal combined guidance missile

  • Received Date: 2013-02-21
  • Rev Recd Date: 2013-03-24
  • Publish Date: 2013-10-25
  • The IR/MMW terminal combined guidance missile, such as terminal-sensitive submunition, has been used widely on the war field. It is difficult to evaluate operational effectiveness with ball firing of terminal-sensitive submunition attacking armored forces. The movement model of terminal-sensitive submunition operate, such as ballistic model etc. was established. The attack state of terminal-sensitive submunition aiming at armored forces was constructed. The simulation test was used to evaluate hitting probability of terminal-sensitive submunition to armored forces. The operational effectiveness of terminal-sensitive submunition was evaluated also by simulation test. The simulation result demonstrates that the terminal-sensitive submunition has been the severe threat for armored forces.
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    [2] Pan Bo, Feng Jinfu, Li Qian, et al. Tracing algorithm for MMW/IR multi-sensors fusion [J]. J Infrared Millim Waves, 2010, 23(3): 230-235. (in Chinese)
    [3] Cui Zhishe, Zeng Tao, Long Teng. Target tracking for IR/ MMW combined seeker based on data fusion [J]. J Infrared Millim Waves, 2002, 21(6): 460-464. (in Chinese)
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    [6] Yang Shaoqin. Smart Munition Engineering [M]. Beijing: National Defense Industry Press, 2010: 4-47. (in Chinese)
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    [8] Fan Kun. Research of passive countermeasure for terminal-sensitive submunition [D]. Nanjing: Nanjing University of Science and Technology, 2007: 4-8. (in Chinese)
    [9] Guo Rui. Study on general correlative technology of terminal-sensitive submunition for missile[D]. Nanjing: Nanjing University of Science and Technology, 2006: 10-43. (in Chinese)
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    [12] Davis B S. Comparison of Aerodynamic Coefficients for the M4831A1 and XM898 Projectiles Determined from Transonic Range Data[M]. BRL-MR 3999, U.S. Army Ballistic Research Laboratory, Aberdeen Proving Ground, 1992.
    [13] Liu Shiping, Han Zipeng, Yu Jintian, et al. Parameters estimation and trajectory calculation of parachute/submunition system from the data of free flight test [J]. Journal of Ballistics, 1997, 9(3): 70-73. (in Chinese)
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Operational effectiveness evaluation for IR/MMW terminal combined guidance missile

  • 1. Luoyang Electric Equipment Test Center,Luoyang 471003,China

Abstract: The IR/MMW terminal combined guidance missile, such as terminal-sensitive submunition, has been used widely on the war field. It is difficult to evaluate operational effectiveness with ball firing of terminal-sensitive submunition attacking armored forces. The movement model of terminal-sensitive submunition operate, such as ballistic model etc. was established. The attack state of terminal-sensitive submunition aiming at armored forces was constructed. The simulation test was used to evaluate hitting probability of terminal-sensitive submunition to armored forces. The operational effectiveness of terminal-sensitive submunition was evaluated also by simulation test. The simulation result demonstrates that the terminal-sensitive submunition has been the severe threat for armored forces.

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