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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Three-dimensional integrated guidance and control for strap-down missiles considering seeker's field-of-view angle constraint
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Three-dimensional integrated guidance and control for strap-down missiles considering seeker's field-of-view angle constraint

机译:考虑寻求者视野角约束的皮带上导弹的三维综合指导和控制

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摘要

This paper investigates a novel three-dimensional (3D) integrated guidance and control (IGC) method for skid-to-turn (STT) missiles with strap-down seeker. Firstly, a nonlinear IGC model considering seeker's field-of-view (FOV) constraint is built by employing the strap-down decoupling model, based on which the strict feedback state equation with matched and unmatched uncertainties is derived. Secondly, to handle the FOV angle and the roll angle constraints, an IGC law is proposed by combining dynamic surface control (DSC) approach with integral barrier Lyapunov function (iBLF), by which an adaptive law is employed to estimate the square of the disturbance bound. Finally, the uniform ultimately boundedness of the closed-loop system is proved strictly based on the Lyapunov stability theory, and the effectiveness and robustness of the proposed IGC scheme are illustrated with numerical simulations.
机译:本文调查了一种新的三维(3D)综合指导和控制(IGC)方法,用于用带子沿着皮带驱动旋转(STT)导弹。 首先,考虑寻求者视野(FOV)约束的非线性IGC模型是通过采用带子去耦模型构建的,基于该模拟模型,基于该模型,该模型是推导出具有匹配和无与伦比的不确定性的严格反馈状态方程。 其次,为了处理FOV角度和滚动角度约束,通过将动态表面控制(DSC)方法与整体屏障Lyapunov函数(IBLF)组合来提出IGC定律,通过该方法采用自适应法来估计干扰的平方 边界。 最后,严格基于Lyapunov稳定性理论严格证明了闭环系统的均匀界限,并用数值模拟说明了所提出的IGC方案的有效性和鲁棒性。

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