New Result on Interception of Stationary Targets at Arbitrary Time-Varying Speed

Yuanhe Liu, Kebo Li, Yangang Liang, Jin Tang
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Abstract

In this paper, some new results on time-varying missile against a stationary target using pure proportional navigation (PPN) are developed in the planar interception problem. First, the relative motion equation is established in arc-length domain based on the differential geometry theory, which eliminates the influence of time-varying missile speed. Then, the closed-form solution of time-varying speed missile intercepting stationary target with PPN is deduced, and the interception performance is analyzed. Additionally, considering the missile maneuvering acceleration limit, the capture region of time-varying speed missile is analyzed. Finally, the results derived in this paper are verified by numerical simulation analysis for various scenarios.
任意时变速度静止目标拦截的新结果
本文在平面拦截问题中,给出了纯比例导航(PPN)在时变导弹对抗静止目标问题上的一些新结果。首先,基于微分几何理论在弧长域建立了相对运动方程,消除了弹速时变的影响;在此基础上,推导了时变速度导弹利用PPN拦截静止目标的封闭解,并对其拦截性能进行了分析。此外,考虑导弹机动加速度限制,分析了时变速度导弹的捕获区域。最后,通过不同场景下的数值模拟分析验证了本文的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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