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首页> 外文期刊>Physics of fluids >Linear feedback control of transient energy growth and control performance limitations in subcritical plane Poiseuille flow
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Linear feedback control of transient energy growth and control performance limitations in subcritical plane Poiseuille flow

机译:亚临界平面Poiseuille流中瞬态能量增长的线性反馈控制和控制性能限制

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摘要

Suppression of the transient energy growth in subcritical plane Poiseuille flow via feedback control is addressed. It is assumed that the time derivative of any of the velocity components can be imposed at the walls as control input and that full-state information is available. We show that it is impossible to design a linear state-feedback controller that leads to a closed-loop flow system without transient energy growth. In a subsequent step, state-feedback controllers-directly targeting the transient growth mechanism-are designed using a procedure based on a linear matrix inequalities approach. The performance of such controllers is analyzed first in the linear case, where comparison to previously proposed linear-quadratic optimal controllers is made; further, transition thresholds are evaluated via direct numerical simulations of the controlled three-dimensional Poiseuille flow against different initial conditions of physical interest, employing different velocity components as wall actuation. The present controllers are effective in increasing the transition thresholds in closed loop, with varying degree of performance depending on the initial condition and the actuation component employed.
机译:解决了通过反馈控制抑制亚临界平面泊瓦流中瞬态能量增长的问题。假定可以将任何速度分量的时间导数作为控制输入施加在墙壁上,并且可以获得全状态信息。我们表明,不可能设计出一种线性状态反馈控制器,该控制器可导致没有瞬态能量增长的闭环流动系统。在随后的步骤中,使用基于线性矩阵不等式方法的过程设计直接针对瞬态增长机制的状态反馈控制器。首先在线性情况下分析此类控制器的性能,然后与之前提出的线性二次最优控制器进行比较;此外,针对不同的物理关注初始条件,通过使用不同的速度分量作为墙驱动,通过受控三维Poiseuille流动的直接数值模拟来评估过渡阈值。本控制器有效地提高了闭环中的过渡阈值,其性能取决于初始条件和所采用的致动部件而变化。

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