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Robust Stabilization of Laminar Flows in Varying Flow Regimes

机译:在不同流态下层流的鲁棒稳定

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The stabilization of laminar flows on the base of linearizations and feedback controllers has been the subject of many recent theoretical and computational studies. However, the applicability of the standard approaches is limited due to the inherent fragility of observer based controllers with respect to arbitrary small changes in the system. We show that a slight variation in the Reynolds number of a flow setup amounts to a coprime factor perturbation in the associated linear transfer function. Based on these findings, we argue that known concepts from robust control can be exploited to come up with an output feedback law that can stabilize the cylinder wake over the transition period from a stable to a stabilized regime.
机译:在线性化和反馈控制器的基础上稳定层流一直是许多近期理论和计算研究的主题。然而,由于基于观察者的控制器相对于系统中任意小的变化的固有脆弱性,标准方法的适用性受到限制。我们表明,流量设置的雷诺数的微小变化等于相关线性传递函数中的互质因子扰动。基于这些发现,我们认为,可以利用鲁棒控制的已知概念来提出输出反馈定律,该定律可以在从稳定状态到稳定状态的过渡期间稳定汽缸尾流。

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