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Direct Intercept Guidance using Differential Geometry Concepts

机译:使用微分几何概念的直接拦截制导

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This paper examines the application of differential geometry to the engagement of both nonmanoeuvring and manoeuvring targets. The kinematics of the engagement for both manoeuvring and nonmanoeuvring target are developed and expressed in differential geometric terms. Two-dimensional geometry is then used to determine the intercept conditions for a straight line target and a constant manoeuvre target. The intercept conditions for both targets are developed for the case when the interceptor missile guides onto a straight line interception. These two cases are shown to have a common set of core conditions such that it enables a unified guidance law to be developed. The guidance law is shown to be globally stable using Lyapunov theory, so that guidance capture is assured for any initial condition. The analysis and guidance law design does not rely on local linearisation and can be shown to produce guidance trajectories that mirror proportional navigation for the straight line interception of a nonmanoeuvring target for which proportional navigation was originally developed. The paper finishes with simulation in two dimensions, illustrating the convergence and solution properties of the approach.
机译:本文研究了微分几何在非机动目标和机动目标交战中的应用。开发了机动目标和非机动目标的啮合运动学,并以不同的几何术语表示。然后使用二维几何来确定直线目标和恒定机动目标的拦截条件。当拦截导弹引导到直线拦截时,针对两个目标的拦截条件都得到了发展。这两个案例显示具有一组共同的核心条件,因此可以制定统一的指导法。根据李雅普诺夫理论,制导律在全球范围内是稳定的,因此可以确保在任何初始条件下都能捕获制导。分析和制导律设计不依赖于局部线性化,可以显示出产生与比例导航相对应的直线轨迹的制导轨迹,该直线导航法是针对非操纵目标的直线截取的,非比例目标最初是针对比例导航而开发的。本文完成了二维仿真,说明了该方法的收敛性和解决方案属性。

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