• Infrared and Laser Engineering
  • Vol. 49, Issue 4, 0403001 (2020)
He Zhang, Hongxia Li, Libo Ding*, and Bingting Zha
Author Affiliations
  • ZNDY of Ministerial Key Laboratory, Nanjing University of Science and Technology, Nanjing 210094, China
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    DOI: 10.3788/IRLA202049.0403001 Cite this Article
    He Zhang, Hongxia Li, Libo Ding, Bingting Zha. Modeling and simulation of multi-detection point optimal initiation of synchronous scanning panoramic pulse laser fuze[J]. Infrared and Laser Engineering, 2020, 49(4): 0403001 Copy Citation Text show less
    Pulse laser synchronous scanning detection scheme
    Fig. 1. Pulse laser synchronous scanning detection scheme
    Location diagram of target detection point in missile coordinate system 目标探测点在弹体坐标系中的位置示意图
    Fig. 2. Location diagram of target detection point in missile coordinate system 目标探测点 在弹体坐标系 中的位置示意图
    System detecting target in geodetic coordinate system 大地坐标系中系统探测目标示意图
    Fig. 3. System detecting target in geodetic coordinate system 大地坐标系 中系统探测目标示意图
    Diagram of start detection point and end detection point on target surface
    Fig. 4. Diagram of start detection point and end detection point on target surface
    Fragment and target intersection model. (a) Intersection process of fragments and targets in the geodetic coordinate system; (b) Initiation azimuth in the projectile coordinate system
    Fig. 5. Fragment and target intersection model. (a) Intersection process of fragments and targets in the geodetic coordinate system; (b) Initiation azimuth in the projectile coordinate system
    Relationship between the optimal initiation time, initiation azimuth and the fragment speed. (a)Optimal initiation time vs fragment speed; (b)Optimal initiation azimuth vs fragment speed
    Fig. 6. Relationship between the optimal initiation time, initiation azimuth and the fragment speed. (a)Optimal initiation time vs fragment speed; (b)Optimal initiation azimuth vs fragment speed
    Relationship between the optimal initiation time, initiation azimuth and the projectile speed. (a)Optimal initiation time vs projectile speed; (b)Optimal initiation azimuth vs projectile speed
    Fig. 7. Relationship between the optimal initiation time, initiation azimuth and the projectile speed. (a)Optimal initiation time vs projectile speed; (b)Optimal initiation azimuth vs projectile speed
    Relationship between the optimal initiation time, initiation azimuth and the distance between the projectile with the target.(a)Optimal initiation time vs the distance between the projectile and target;(b)Optimal initiation azimuth vs the distance between projectile and target
    Fig. 8. Relationship between the optimal initiation time, initiation azimuth and the distance between the projectile with the target.(a)Optimal initiation time vs the distance between the projectile and target;(b)Optimal initiation azimuth vs the distance between projectile and target
    Relationship between the optimal initiation time, initiation azimuth and the target characteristic length.(a)Optimal initiation time vs the target characteristic length;(b)Optimal initiation azimuth vs the target characteristic length
    Fig. 9. Relationship between the optimal initiation time, initiation azimuth and the target characteristic length.(a)Optimal initiation time vs the target characteristic length;(b)Optimal initiation azimuth vs the target characteristic length
    Relationship between the optimal initiation time, initiation azimuth and the target speed. (a)Optimal initiation time vs target speed; (b)Optimal initiation azimuth vs target speed
    Fig. 10. Relationship between the optimal initiation time, initiation azimuth and the target speed. (a)Optimal initiation time vs target speed; (b)Optimal initiation azimuth vs target speed
    He Zhang, Hongxia Li, Libo Ding, Bingting Zha. Modeling and simulation of multi-detection point optimal initiation of synchronous scanning panoramic pulse laser fuze[J]. Infrared and Laser Engineering, 2020, 49(4): 0403001
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