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Stabilization of the Gas Flow in Star-Shaped Networks by Feedback Controls with Varying Delay

机译:通过具有可变延迟的反馈控制来稳定星形网络中的气流

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We consider the subcritical gas flow through star-shaped pipe networks. The gas flow is modeled by the isothermal Euler equations with friction. We stabilize the isothermal Euler equations locally around a given stationary state on a finite time interval. For the stabilization we apply boundary feedback controls with time-varying delays. The delays are given by C~1-functions with bounded derivatives. In order to analyze the system evolution, we introduce an L~2-Lyapunov function with delay terms. The boundary controls guarantee the exponential decay of the Lyapunov function with time.
机译:我们考虑了通过星形管网的亚临界气流。用等温欧拉方程对气体流量进行建模。我们在有限的时间间隔内围绕给定的稳态局部稳定等温欧拉方程。为了稳定起见,我们应用时变延迟的边界反馈控制。延迟由带有有界导数的C〜1函数给出。为了分析系统演化,我们引入了具有时滞项的L〜2-Lyapunov函数。边界控制保证了李雅普诺夫函数随时间的指数衰减。

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