ZHOU Qi-hang, ZHANG Liu, HUO Ming-ying etc. Design and validation of ballistic missile midcourse penetration trajectory[J]. Editorial Office of Optics and Precision Engineering, 2015,23(9): 2645-2655
ZHOU Qi-hang, ZHANG Liu, HUO Ming-ying etc. Design and validation of ballistic missile midcourse penetration trajectory[J]. Editorial Office of Optics and Precision Engineering, 2015,23(9): 2645-2655 DOI: 10.3788/OPE.20152309.2645.
Design and validation of ballistic missile midcourse penetration trajectory
For the ballistic missile midcourse penetration trajectory
this paper presents a new trajectory design optimization and evaluation method. Based on search and extended node in trajectory planning
the pulse ignition point in a multi-pulse trajectory was taken as a node and a multi-pulse maneuvering orbital transfer model was established. According to the model
the penetration trajectory was designed and optimized.Then
by taken the detection mechanism
performance
deployment of the enemy defense system into account
the prediction error between enemy prediction trajectory and real trajectory was as the evaluation index of penetration trajectory to reduce the prediction accuracy of enemy missile based on “game theory”. Finally
a ground verification platform for missile penetration effectiveness was designed to verify the validity of the penetration efficiency and trajectory evaluation method for the designed trajectory. As compared with the minimum energy trajectory
the experimental results show that the prediction error of ballistic missile defense system has increased by 5 to 15 times
reached 100—300 km
flight time is shortened by 8.53%
and the planning time is less than 140 s. These results show that the trajectory design method proposed in this paper can plan a ballistic with very high penetration probability in a short time.
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references
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