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Control studies of time-delayed dynamical systems with the method of continuous time approximation

机译:连续时间近似方法对时滞动力系统的控制研究

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This paper presents control studies of delayed dynamical systems with the help of the method of continuous time approximation (CTA). The CTA method proposes a continuous time approximation of the delayed portion of the response leading to a high and finite dimensional state space formulation of the time-delayed system. Various controls of the system such as LQR and output feedback controls are readily designed with the existing design tools. The properties of the method in frequency domain are also discussed. We have found that time-domain methods such as semi-discretization and CTA, and other numerical integration algorithms can produce highly accurate temporal responses and dominant poles of the system, while missing all the fast and high frequency poles, which explains why many numerical methods can be applied to study the stability of time-delayed systems, and may not be a good tool for control design. Optimal feedback controls for a linear oscillator, collocated and non-collocated feedback controls of an Euler beam, and an experimental demonstration are presented in the paper.
机译:本文借助连续时间逼近法(CTA)提出了时滞动力系统的控制研究。 CTA方法提出了响应的延迟部分的连续时间近似,从而导致了时滞系统的高维状态空间公式。使用现有的设计工具可以轻松地设计系统的各种控件,例如LQR和输出反馈控件。还讨论了该方法在频域中的性质。我们发现时域方法(例如半离散化和CTA)以及其他数值积分算法可以产生高度精确的时间响应和系统的主导极点,而错过了所有快速和高频极点,这解释了为什么许多数值方法可用于研究时滞系统的稳定性,可能不是控制设计的好工具。本文介绍了线性振荡器的最佳反馈控制,欧拉光束的并置和非并置反馈控制,以及实验演示。

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