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A new perspective for time delayed control systems with application to vibration suppression

机译:具有振动抑制的时间延迟控制系统的新视角

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Most control systems are contaminated with some level of time delay. Whether it appears due to the inherent system dynamics or because of the sensory feedback, the delay has to be resolved regarding the system stability. We explain an unprecedented and fundamental treatment of time delay in a general class of linear time invariant systems (LTI) following a strategy, which we call the 'Direct Method'. The strengths of the method lie in recognizing two interesting and novel features, which are typical for this class of systems. These features enable a structured strategy to be formed for analyzing the stability of LTI-TDS (Time Delayed Systems). Vibration control settings are not immune from time delay effects. We present a case study on active control of vibration using linear fill state feedback. We then apply the Direct Method on this structure to display the stability outlook along the axis of delay. There appears an interesting property, which is related to the determination of the imaginary (i.e. marginally stable) roots of LTTTDS. We state a general lemma and proof on this point.
机译:大多数控制系统被一些时间延迟污染。无论是由于固有的系统动态因素还是由于感官反馈而出现,都必须在系统稳定性解决延迟。我们在策略之后解释了一个前所未有的和基本的线性时间不变系统(LTI)的时间延迟,我们称之为“直接方法”。该方法的优点旨在识别两个有趣和新颖的特征,这对于这类系统典型。这些特征能够形成用于分析LTI-TDS(时间延迟系统)的稳定性的结构化策略。振动控制设置不会从时间延迟效果免疫。我们展示了使用线性填充状态反馈的振动主动控制的案例研究。然后,我们在这种结构上应用直接方法以沿延迟轴显示稳定性前景。似乎有一个有趣的财产,这与确定LTTTDS的虚构(即略微稳定)根的确定有关。我们陈述了一般的引理和证据。

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