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首页> 外文期刊>Chaos, Solitons and Fractals: Applications in Science and Engineering: An Interdisciplinary Journal of Nonlinear Science >Modeling and stability analysis of a fractional-order Francis hydro-turbine governing system
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Modeling and stability analysis of a fractional-order Francis hydro-turbine governing system

机译:分数阶弗朗西斯水轮机调节系统的建模与稳定性分析

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In this paper, a fractional order mathematical model of a hydro-turbine governing system is presented to analyze the dynamic stability of the hydro-turbine governing system in the process of operation. The fractional order hydro-turbine governing system is composed of a hydro-turbine and penstock system, a generator system and a hydraulic servo system. As a pioneering work, we proposed a universal solution about the relationship of two parameters in higher-degree equations according to the stability theorem of a fractional order system. Based on the above theorem, we presented a variable law of stable regions of the fractional-order hydro-turbine governing system and analyzed the effect of various degree of elastic water hammer on the stable regions of the parameters k(d) and k(p) with the increase of fractional order alpha. The nonlinear dynamic behaviors of the system are also studied in detail. Finally, all of these results supply some basic theories for the running of a hydropower plant. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了水轮机调节系统的分数阶数学模型,以分析水轮机调节系统在运行过程中的动态稳定性。分数阶水轮机调节系统由水轮机和压力管道系统,发电机系统和液压伺服系统组成。作为一项开创性的工作,我们根据分数阶系统的稳定性定理,提出了关于高阶方程中两个参数之间关系的通用解。基于以上定理,我们给出了分数阶水轮机调节系统稳定区域的变量定律,并分析了不同程度的弹性水锤对参数k(d)和k(p)的稳定区域的影响。 )随着分数阶alpha的增加。还详细研究了系统的非线性动力学行为。最后,所有这些结果为水力发电厂的运行提供了一些基本理论。 (C)2015 Elsevier Ltd.保留所有权利。

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