首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering >Robust autopilot design of uncertain bank-to-turn missiles using state-space disturbance observers
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Robust autopilot design of uncertain bank-to-turn missiles using state-space disturbance observers

机译:使用状态空间扰动观测器的不确定转弯导弹的鲁棒自动驾驶设计

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摘要

Robust autopilot design for bank-to-turn (BTT) missiles under disturbances and uncertainties is investigated in this article using the disturbance observer concept. It is well known that the BTT missile dynamics undergo substantial change during its flight. In this disturbance observer-based control (DOBC) setting, the influences caused by parameter variations are merged into disturbance terms and regarded as parts of the lumped disturbances. Disturbance observers are employed to estimate the lumped disturbances, and then a disturbance observer-based robust control (DOBRC) method is proposed in this article to compensate the influences of parameter variations and the disturbances from the output channels. Similar to the baseline linear quadratic regulator design, the DOBRC is analysed and designed using linear techniques. Very promising performance has been achieved for the BTT missile as shown in simulation. It is demonstrated that DOBC approach provides a simple, intuitive, and practical solution for many challenging control problems where systems are subject to significant external disturbances, and uncertainties such as BTT missiles.
机译:本文使用干扰观测器的概念,研究了在扰动和不确定性下转弯(BTT)导弹的鲁棒自动驾驶设计。众所周知,BTT导弹的动力在飞行过程中会发生重大变化。在这种基于干扰观测器的控制(DOBC)设置中,由参数变化引起的影响被合并为干扰项,并被视为集总干扰的一部分。利用扰动观测器估计集总扰动,然后提出一种基于扰动观测器的鲁棒控制(DOBRC)方法,以补偿参数变化和输出通道扰动的影响。与基线线性二次调节器设计相似,DOBRC是使用线性技术进行分析和设计的。如仿真所示,BTT导弹已经获得了非常有希望的性能。事实证明,DOBC方法为许多具有挑战性的控制问题提供了一种简单,直观和实用的解决方案,在这些问题中,系统会受到严重的外部干扰和不确定性(例如BTT导弹)的影响。

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