The Study on Adaptive Detonation Strategy for Anti-radiation Missile
Zhe Zhang
Abstract
Zhe Zhang
Abstract
To improve the fuze-warhead matching efficiency of anti-radiation missile(ARM) equipped with contact-proximity combined fuze and dual purpose warhead,an adaptive detonation strategy was put forward.This strategy could choose the contact or proximity burst mode and the optimal proximity burst position.Assuming that the onboard detectors could acquire the parameter of height,trajectory angle,velocity,miss azimuth and miss distance etc,the detonation law was made with the priority of contact burst and the subordination of proximity burst.To destroy the target antenna,the optimal proximity burst position and detonation time-delay adaptively,AGM-88 C attacking SAM-6 radar was simulated.The results show that this adaptive detonation strategy could make ARM achieve a good fuze-warhead matching efficiency.
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To improve the fuze-warhead matching efficiency of anti-radiation missile(ARM) equipped with contact-proximity combined fuze and dual purpose warhead,an adaptive detonation strategy was put forward.This strategy could choose the contact or proximity burst mode and the optimal proximity burst position.Assuming that the onboard detectors could acquire the parameter of height,trajectory angle,velocity,miss azimuth and miss distance etc,the detonation law was made with the priority of contact burst and the subordination of proximity burst.To destroy the target antenna,the optimal proximity burst position and detonation time-delay adaptively,AGM-88 C attacking SAM-6 radar was simulated.The results show that this adaptive detonation strategy could make ARM achieve a good fuze-warhead matching efficiency.
Key concepts: Fuze, Warhead, Detonation, Missile, Position (finance), Radar, Ignition system, Computer science