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Boundary Observer for Output-Feedback Stabilization of Thermal-Fluid Convection Loop

机译:热流体对流回路的输出反馈稳定化的边界观测器

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摘要

In this paper, we consider a 2-D model of thermal fluid convection that exhibits the prototypical Rayleigh–Bernard convective instability. The fluid is enclosed between two cylinders, heated from above, and cooled from below, which makes its motion unstable for a large enough Rayleigh number. We design an stabilizing output feedback boundary control law for a realistic collocated setup, with actuation and measurements located at the outer boundary. Actuation is through rotation (direct velocity actuation) and heat flux (heating or cooling) of the outer cylinder, while measurements of friction and temperature are obtained at the same boundary. Though only a linearized version of the plant is considered in the design, an extensive closed loop simulation study of the nonlinear model shows that our design works for reasonably large initial conditions. A highly accurate approximation to the control kernels and observer output injection gains is found in closed form.
机译:在本文中,我们考虑了二维热流体对流模型,该模型表现出典型的瑞利-伯纳德对流不稳定性。流体被封闭在两个气缸之间,从上方被加热,从下方被冷却,这使得其运动在足够大的瑞利数下变得不稳定。我们为逼真的并置设置设计了稳定的输出反馈边界控制定律,其驱动和测量位于外边界。驱动是通过外缸的旋转(直接速度驱动)和热通量(加热或冷却)实现的,而摩擦力和温度的测量值是在同一边界处获得的。尽管在设计中只考虑了工厂的线性化版本,但对非线性模型进行的广泛闭环仿真研究表明,我们的设计适用于相当大的初始条件。在封闭形式下,可以找到控制核和观察者输出注入增益的高精度近似值。

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