Robust Guidance Algorithm against Hypersonic Targets

Jian Chen, Yu Han, Yuan Ren
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Abstract

This chapter presents a robust guidance algorithm for intercepting hypersonic targets. Since the differential of the line-of-sight rate is more sensitive to the target maneuver, a nonlinear proportional and differential guidance law (NPDG) is given by employing the differential of the line-of-sight rate produced by a nonlinear tracking differentiator. Based on the NPDG, a fractional calculus guidance law (FCG) is presented by utilizing the differential definition of fractional order. On the basis of interceptor-target relative motions, the stability criteria of the guidance system of the FCG are deduced. In different target maneuver and noisy cases, simulation results verify that the proposed guidance laws have small miss distances and the FCG has a stronger robustness.
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高超声速目标鲁棒制导算法
本章提出了一种拦截高超声速目标的鲁棒制导算法。由于视距速率的微分对目标机动更为敏感,利用非线性跟踪微分器产生的视距速率的微分给出了非线性比例微分制导律。在NPDG的基础上,利用分数阶的微分定义,提出了分数阶微积分制导律。基于拦截目标的相对运动,推导了FCG制导系统的稳定性判据。仿真结果表明,在不同目标机动和噪声情况下,所提出的制导律具有较小的脱靶量,具有较强的鲁棒性。
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