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Stability analysis and numerical simulations of a one dimensional open channel hydraulic system

机译:一维开放通道液压系统的稳定性分析与数值模拟

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This paper is dedicated to the qualitative analysis as well as numerical simulations of a one dimensional open channel hydraulics system which is commonly used in hydraulic engineering to model the unsteady flow dynamics in a river. First, an output feedback control is proposed. Next, the closed-loop system is proved to possess a unique solution in a functional space. Furthermore, the spectrum and resolvent sets of the system operator are characterized. Then, stability results are stated and proved according to a smallness assumption on the feedback gain. The proof invokes Lyapunov direct method. Last but not least, we adopt the Chebychev collocation method, that uses backward Euler method and the Gauss-Lobatto points, to provide numerical simulations in order to ascertain the correctness of the theoretical outcomes. (C) 2017 Elsevier Inc. All rights reserved.
机译:本文专用于定性分析,以及一维开放通道液压系统的数值模拟,常用于液压工程,以模拟河流中的不稳定流动动态。 首先,提出了一种输出反馈控制。 接下来,证明闭环系统在功能空间中具有独特的解决方案。 此外,系统操作员的频谱和分辨率集为。 然后,根据反馈增益的小于假设,规定并证明了稳定性结果。 证明调用了Lyapunov Direct方法。 最后但并非最不重要的是,我们采用了使用后向欧拉方法和高斯 - 莱布特点的Chebychev搭配方法,提供数值模拟,以确定理论结果的正确性。 (c)2017年Elsevier Inc.保留所有权利。

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