• Infrared and Laser Engineering
  • Vol. 51, Issue 4, 20210225 (2022)
Aiqiang Guo, Tianpeng Li, Xiaonan Li, and Xinbao Gao
Author Affiliations
  • Shijiazhuang Campus, Army Engineering University of PLA, Shijiazhuang 050003, China
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    DOI: 10.3788/IRLA20210225 Cite this Article
    Aiqiang Guo, Tianpeng Li, Xiaonan Li, Xinbao Gao. Simulation study of smoke screen jamming laser terminal guidance projectile[J]. Infrared and Laser Engineering, 2022, 51(4): 20210225 Copy Citation Text show less
    General structure and input/output relationship of the digital simulation system of laser terminal guidance projectile
    Fig. 1. General structure and input/output relationship of the digital simulation system of laser terminal guidance projectile
    Distance curve and the interference result of the projectile with the initial velocity of 1000 m/s and the ballistic deflection angle of 2°
    Fig. 2. Distance curve and the interference result of the projectile with the initial velocity of 1000 m/s and the ballistic deflection angle of 2°
    Distance curve and the interference result of the projectile with the initial velocity of 900 m/s and the ballistic deflection angle of 5°
    Fig. 3. Distance curve and the interference result of the projectile with the initial velocity of 900 m/s and the ballistic deflection angle of 5°
    When the formation time of the smoke screen is 25 s, the distance curve of the projectile to the target and the interference situation
    Fig. 4. When the formation time of the smoke screen is 25 s, the distance curve of the projectile to the target and the interference situation
    When the formation time of the smoke screen is 30 s, the distance curve of the projectile to the target and the interference situation
    Fig. 5. When the formation time of the smoke screen is 30 s, the distance curve of the projectile to the target and the interference situation
    When the formation time of the smoke screen is 35 s, the distance curve of the projectile to the target and the interference situation
    Fig. 6. When the formation time of the smoke screen is 35 s, the distance curve of the projectile to the target and the interference situation
    When the formation time of the smoke screen is 45 s, the distance curve of the projectile to the target and the interference situation
    Fig. 7. When the formation time of the smoke screen is 45 s, the distance curve of the projectile to the target and the interference situation
    When the formation time of the smoke screen is 55 s, the distance curve of the projectile to the target and the interference situation
    Fig. 8. When the formation time of the smoke screen is 55 s, the distance curve of the projectile to the target and the interference situation
    Horizontal plane trajectory of the projectile under different smoke screen formation time
    Fig. 9. Horizontal plane trajectory of the projectile under different smoke screen formation time
    Aiqiang Guo, Tianpeng Li, Xiaonan Li, Xinbao Gao. Simulation study of smoke screen jamming laser terminal guidance projectile[J]. Infrared and Laser Engineering, 2022, 51(4): 20210225
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