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Three-dimensional nonlinear H-infinity guidance law

机译:三维非线性H无限导引律

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This paper proposes a novel three-dimensional missile guidance law design based on nonlinear H-infinity control. The complete nonlinear kinematics of pursuit-evasion motion is considered in the three-dimensional spherical co-ordinates system; neither linearization nor small angle assumption is made here. The nonlinear H-infinity guidance law is expressed in a simple form by solving the associated Hamilton-Jacobi partial differential inequality analytically. Unlike adaptive guidance laws, the implement of the proposed robust H-infinity guidance law does not require the information of target acceleration, while ensuring acceptable interceptive performance for arbitrary target with finite acceleration. The resulting pursuit-evasion trajectories for both the H-infinity-guided missile and the worst-case target are determined in closed form, and the performance robustness against variations in target acceleration, in engagement condition, and in control loop gain, is verified by numerical simulations. Copyright (C) 2001 John Wiley & Sons, Ltd. [References: 26]
机译:本文提出了一种基于非线性H-无穷大控制的新型三维导弹制导律设计。在三维球坐标系中考虑了逃避运动的完整非线性运动学。在此既不进行线性化也不假设小角度。非线性H-无穷制导律可以通过解析相关的Hamilton-Jacobi偏微分不等式以简单形式表示。与自适应制导律不同,所提出的鲁棒H无限制导律的实现不需要目标加速度的信息,而可以确保对于具有有限加速度的任意目标都具有可接受的拦截性能。 H形制导导弹和最坏情况下目标的最终躲避轨迹是封闭形式确定的,并且通过以下方法验证了针对目标加速度,接合条件和控制环增益变化的性能鲁棒性:数值模拟。版权所有(C)2001 John Wiley&Sons,Ltd. [参考:26]

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