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Robust finite-time line-of-sight angular rate estimation in missile guidance

机译:导弹制导中的鲁棒有限时视线角速率估计

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摘要

This paper documents a robust finite-time line-of-sight angular rate estimation in missile guidance. Through geometric homogeneity and Lyapunov theories, it is shown that the observer estimation errors can converge into a bounded nonzero residual set in finite time and the upper bound can be lowered by parameter tunings. For estimation performance improvement, the sliding mode gains are also determined theoretically. With the help of these gains, it is proved that the observer estimation errors can converge to zero in finite time. Detailed simulation results with some comparisons are performed to validate the proposed formulation.
机译:本文介绍了在导弹制导中可靠的有限时间视线角速率估计。通过几何均匀性和李雅普诺夫理论,表明观察者估计误差可以在有限时间内收敛到有界的非零残差集,并且可以通过参数调整来降低上限。为了改善估计性能,理论上还确定了滑模增益。借助于这些增益,证明了观察者估计误差可以在有限时间内收敛到零。进行了详细的仿真结果并进行了一些比较,以验证所提出的公式。

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