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首页> 外文期刊>International Journal Of Modelling & Simulation >ON THE EFFECT OF TURBINE GOVERNOR GAIN ON BIFURCATIONS OF SUBSYNCHRONOUS RESONANCE IN POWER SYSTEMS
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ON THE EFFECT OF TURBINE GOVERNOR GAIN ON BIFURCATIONS OF SUBSYNCHRONOUS RESONANCE IN POWER SYSTEMS

机译:涡轮调节器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 turbine governor (TG) gain on the bifurcations of subsynchronous resonance (SSR) in power systems. The first system of the IEEE second benchmark model of SSR is considered for the numerical simulations. As the compensation factor increases, the power transfer capability of the transmission line increases. However, the operating point loses stability via supercritical Hopf bifurcation. On further increase of the compensation factor beyond the Hopf bifurcation, the system routes to chaos via torus breakdown. It is found that the value of the TG gain affects the location of the Hopf bifurcation point. High value of TG gain stabilizes the operating point of the system at all realistic compensation factor and therefore eliminates all bifurcations of the system. Time-domain simulation results of the nonlinear dynamical mathematical model carried out at different governor gains and two operating conditions agree with the results of the eigenvalue analysis.
机译:本文介绍了涡轮调节器(TG)增益对电力系统中次同步谐振(SSR)分叉的影响。数值模拟考虑了IEEE SSR的第二基准模型的第一系统。随着补偿因子的增加,传输线的功率传输能力增加。但是,由于超临界Hopf分叉,工作点失去了稳定性。在霍普夫分支以外的补偿因数进一步增加时,系统会通过环面击穿而陷入混乱。可以发现,TG增益的值会影响Hopf分叉点的位置。 TG增益的高值可以在所有实际补偿因子下稳定系统的工作点,因此可以消除系统的所有分叉。在不同的调速器增益和两个工作条件下进行的非线性动力学数学模型的时域仿真结果与特征值分析的结果一致。

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