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首页> 外文期刊>Journal of guidance, control, and dynamics >Impact-Angle-Constrained Suboptimal Model Predictive Static Programming Guidance of Air-to-Ground Missiles
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Impact-Angle-Constrained Suboptimal Model Predictive Static Programming Guidance of Air-to-Ground Missiles

机译:空地导弹的冲击角约束次优模型预测静态编程指导

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摘要

A nonlinear suboptimal guidance law is presented in this paper for successful interception of ground targets by air-launched missiles and guided munitions. The main feature of this guidance law is that it accurately satisfies terminal impact angle constraints in both azimuth as well as elevation simultaneously. In addition, it is capable of hitting the target with high accuracy as well as minimizing the lateral acceleration demand. The guidance law is synthesized using recently developed model predictive static programming (MPSP). Performance of the proposed MPSP guidance is demonstrated using three-dimensional (3-D) nonlinear engagement dynamics by considering stationary, moving, and maneuvering targets. Effectiveness of the proposed guidance has also been verified by considering first-order autopilot lag as well as assuming inaccurate information about target maneuvers. Multiple munitions engagement results are presented as well. Moreover, comparison studies with respect to an augmented proportional navigation guidance (which does not impose impact angle constraints) as well as an explicit linear optimal guidance (which imposes the same impact angle constraints in 3-D) lead to the conclusion that the proposed MPSP guidance is superior to both. A large number of randomized simulation studies show that it also has a larger capture region.
机译:本文提出了一种非线性次优制导律,以成功地空射导弹和制导弹药拦截地面目标。该制导法则的主要特征是它可以同时精确地满足方位角和仰角上的终端冲击角约束。另外,它能够高精度地击中目标并最小化横向加速度需求。使用最近开发的模型预测静态规划(MPSP)合成制导律。通过考虑固定,移动和机动目标,使用三维(3-D)非线性啮合动力学论证了拟议的MPSP制导的性能。通过考虑一阶自动驾驶仪的滞后以及假设有关目标演习的信息不正确,也验证了拟议指南的有效性。还介绍了多种弹药的战斗结果。此外,针对增强比例导航制导(不施加冲击角约束)和显式线性最优制导(对3-D施加相同的冲击角约束)的比较研究得出结论:拟议的MPSP指导优于两者。大量随机模拟研究表明,它也有较大的捕获区域。

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