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On the effect of AVR gain on bifurcations of subsynchronous resonance in power systems

机译:关于AVR增益对电力系统次同步谐振分叉的影响

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This paper presents the effect of the automatic voltage regulator (AVR) gain on the bifurcations of sub-synchronous resonance (SSR) in power systems. The first system of the IEEE second benchmark model of SSR is chosen for numerical investigations. The dynamics of both axes damper windings of the generator and that of the power system stabilizer (PSS) are included. The bifurcation parameter is the compensation factor. Hopf bifurcation, where a pair of complex conjugate eigenvalues of the linearized model around the operating point transversally crosses from left- to right-half of the complex plane, is detected in all AVR gains. It is shown that the Hopf bifurcation is of subcritical type. The results also show that the location of the Hopf bifurcation point i.e. the stable operating point regions are affected by the value of the AVR gain. The variation of the location of the Hopf bifurcation point as function of the AVR gain for two operating conditions is obtained. Time domain simulation results based on the nonlinear dynamical mathematical model carried out at different compensation factors and AVR gains agree with that of the bifurcation analysis.
机译:本文介绍了自动电压调节器(AVR)增益对电力系统中亚同步谐振(SSR)分叉的影响。选择IEEE SSR第二基准模型的第一个系统进行数值研究。包括发电机和动力系统稳定器(PSS)的两个轴阻尼绕组的动力学特性。分叉参数是补偿因子。在所有AVR增益中都检测到Hopf分叉,其中在工作点周围的线性化模型的一对复共轭特征值从复平面的左半部分到右半部分横向相交。结果表明,霍普夫分支为亚临界类型。结果还表明,Hopf分叉点的位置,即稳定的工作点区域受AVR增益值的影响。获得了两种工作条件下霍夫夫分叉点位置随AVR增益变化的关系。基于非线性动力学数学模型在不同补偿因子和AVR增益下进行的时域仿真结果与分叉分析结果吻合。

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