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Adaptive Control of a Seeker-Guided 2D Missile with Unmodeled Aero dynamics

机译:带有未拼质Aero动力学的寻求引导2D导弹的自适应控制

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In this paper we apply extensions of retrospective cost adaptive control (RCAC) to a 2D missile model considered in prior papers as a benchmark test of adaptive control methods. The dynamics of the missile are highly nonlinear, and instantaneous linearizations are nonminimum phase due to nose sensing and tail actuation. The results that we present in this paper show that the RCAC controller provides results that are comparable to a highly tuned autopilot based on aerodynamic modeling, whereas the RCAC controller uses no knowledge of the missile's aerodynamics. These results significantly improve the results obtained on the same problem using an earlier version of RCAC, presented at the 2010 GNC.
机译:在本文中,我们将回顾性成本自适应控制(RCAC)的扩展应用于先前文件中考虑的2D导弹模型,作为自适应控制方法的基准测试。导弹的动态是高度非线性的,并且瞬时线性化是由于鼻感和尾部致动引起的非最小相位。我们在本文中存在的结果表明,RCAC控制器提供了与基于空气动力学建模的高度调谐的自动驾驶仪相当的结果,而RCAC控制器则不了解导弹的空气动力学。这些结果在2010年GNC提供的早期版本的RCAC中显着提高了在同一问题上获得的结果。

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