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Fractional-Order Modeling and Dynamical Analysis of a Francis Hydro-Turbine Governing System with Complex Penstocks

机译:带有复杂压力管道的弗朗西斯水轮机调节系统的分数阶建模和动力学分析

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摘要

This paper investigates the stability of the Francis hydroturbine governing system with complex penstocks in the gridconnected mode. Firstly, a novel fractional-order nonlinear mathematical model of a Francis hydro-turbine governing system with complex penstocks is built from an engineering application perspective. This model is described by state-space equations and is composed of the Francis hydro-turbine model, the fractional-order complex penstocks model, the third-order generator model, and the hydraulic speed governing system model. Based on stability theory for a fractional-order nonlinear system, this study discovers a basic law of the bifurcation points of the above system with a change in the fractional-order α. Secondly, the stable region of the governing system is investigated in detail, and nonlinear dynamical behaviors of the system are identified and studied exhaustively via bifurcation diagrams, time waveforms, phase orbits, Poincare maps, power spectrums and spectrograms. Results of these numerical experiments provide a theoretical reference for further studies of the stability of hydropower stations.
机译:本文研究了并网模式下带有复杂压力管道的弗朗西斯水轮机调节系统的稳定性。首先,从工程应用的角度出发,建立了带有复杂压力管道的弗朗西斯水轮机调节系统的分数阶非线性数学模型。该模型由状态空间方程描述,由弗朗西斯水轮机模型,分数阶复杂压力管道模型,三阶发电机模型和水力调速系统模型组成。基于分数阶非线性系统的稳定性理论,本研究发现了随着分数阶α的变化,上述系统的分叉点的基本规律。其次,详细研究了控制系统的稳定区域,并通过分叉图,时间波形,相位轨道,庞加莱图,功率谱和频谱图详尽地识别和研究了系统的非线性动力学行为。这些数值实验的结果为进一步研究水电站的稳定性提供了理论参考。

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  • 来源
    《天津大学学报(英文版)》 |2018年第1期|32-44|共13页
  • 作者单位

    Institute of Water Resources and Hydropower Research , Northwest A&F University , Yangling 712100 , China;

    Institute of Water Resources and Hydropower Research , Northwest A&F University , Yangling 712100 , China;

    Department of Mathematics and Statistics, Faculty of Science and Engineering , Curtin University , Perth , WA 6845 , Australia;

    Institute of Water Resources and Hydropower Research , Northwest A&F University , Yangling 712100 , China;

    Institute of Water Resources and Hydropower Research , Northwest A&F University , Yangling 712100 , China;

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  • 入库时间 2022-08-19 03:39:59
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