Fragility-Free Prescribed Performance Control Without Approximation Applied to Waverider Aerocraft

Xiangwei Bu;Baoxu Jiang
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引用次数: 5

Abstract

In this article, a fragility-free prescribed performance control (PPC) approach is proposed for unknown disturbed nonaffine systems with application to flight control of waverider aerocraft (WA). The main improvement is to develop a prescribed funnel containing additional readjusting terms, which is able to autonomously readjust its shape, such that the tracking error, whose value may increase due to parametric perturbations and external disturbances, is always constrained within the prescribed funnel, capable of guaranteeing, for any initial system condition, 1) avoidance of security fragility problem associated with the existing PPC; 2) finite-time prescribed performance concerning tracking errors; and 3) independent of affine model formulation and function approximation. Finally, the addressed design is applied to WA, and compared simulations with practical examples are presented to show the superiority.
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无逼近的无脆弱性能控制在乘波飞行器上的应用
本文针对未知扰动非仿射系统,提出了一种无脆弱性的规定性能控制方法,并将其应用于摇摆飞行器的飞行控制中。主要的改进是开发了一个包含额外重新调整项的规定漏斗,该漏斗能够自主地重新调整其形状,使得跟踪误差(其值可能由于参数扰动和外部扰动而增加)始终被限制在规定漏斗内,能够保证,对于任何初始系统条件,1)避免与现有PPC相关联的安全脆弱性问题;2) 关于跟踪误差的有限时间规定性能;以及3)独立于仿射模型公式和函数近似。最后,将所提出的设计应用于WA,并与实例进行了仿真比较,表明了该设计的优越性。
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2024 Index IEEE Journal on Miniaturization for Air and Space Systems Vol. 5 Table of Contents Front Cover The Journal of Miniaturized Air and Space Systems Broadband Miniaturized Antenna Based on Enhanced Magnetic Field Convergence in UAV
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