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Robust Stabilization of Oblique Wing Aircraft Model Using PID Controller

机译:用PID控制器稳定斜翼飞机模型。

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The paper is focused on computation of all possible robustly stabilizing Proportional-Integral- Derivative (PID) controllers for oblique wing aircraft modelled as interval system. The main idea of the proposed method is based on Tan’s technique for calculation of (nominally) stabilizing PI and PID controllers or robustly stabilizing PI controllers by means of plotting the stability boundary locus in either P-I plane or P-I-D space. Refinement of the existing method by consideration of 16 segment plants instead of 16 Kharitonov plants provides an elegant and efficient tool for finding all robustly stabilizing PID controllers for an interval system.
机译:本文着重于对斜间隔飞机建模的所有可能的鲁棒稳定比例积分微分(PID)控制器的计算。提出的方法的主要思想是基于Tan的技术,通过绘制P-I平面或P-I-D空间中的稳定边界轨迹来计算(名义上)稳定的PI和PID控制器或鲁棒稳定的PI控制器。通过考虑使用16个分段工厂而不是16个Kharitonov工厂来改进现有方法,为查找间隔系统的所有鲁棒稳定的PID控制器提供了一种优雅而有效的工具。

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