首页> 外文期刊>International Journal Of Modelling & Simulation >ON THE EFFECT OF TCSC AND TCSC-CONTROLLER GAIN ON BIFURCATIONS OF SUBSYNCHRONOUS RESONANCE IN POWER SYSTEMS
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ON THE EFFECT OF TCSC AND TCSC-CONTROLLER GAIN ON BIFURCATIONS OF SUBSYNCHRONOUS RESONANCE IN POWER SYSTEMS

机译:TCSC和TCSC控制器增益对电力系统次同步谐振分叉的影响

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The effect of thyristor-controlled series capacitor (TCSC) and its controller gain on bifurcations of subsynchronous resonance (SSR) in power system are studied. Single machine infinite bus (SMIB) power system is considered for the numerical investigations. The series compensation of the transmission line is done by either conventional variable series capacitor or TCSC. The effect of the dynamics of the damper windings is investigated. The results show that in all cases, the operating point of the system loses stability via Hopf bifurcation. Hopf bifurcation comes either in subcritical or supercritical type. Supercritical Hopf bifurcation is depicted when the dynamics of the damper windings are neglected and the line is compensated by conventional series capacitor. With the same compensation scheme i.e., conventional series capacitor, supercritical Hopf bifurcation is addressed when the dynamics of the damper windings are included. On the other hand, subcritical Hopf bifurcation is predicted when the compensation is carried out by TCSC for both cases of including and neglecting the dynamics of the damper windings. In case of supercritical Hopf bifurcation, the system routes to chaos via torus breakdown. Additionally, it is found that when the compensation is done by TCSC, the stable operating point region is enlarged. Moreover, the stable operating point region increases when the damper windings are neglected. The effect of the TCSC controller gain on the locations of the Hopf bifurcation has also been studied.
机译:研究了晶闸管控制串联电容器(TCSC)及其控制器增益对电力系统次同步谐振(SSR)分叉的影响。数值研究考虑了单机无限总线(SMIB)电力系统。传输线的串联补偿可以通过传统的可变串联电容器或TCSC来完成。研究了阻尼绕组动力学的影响。结果表明,在所有情况下,系统的运行点都会因Hopf分叉而失去稳定性。 Hopf分支分为亚临界类型或超临界类型。当阻尼器绕组的动力学被忽略并且通过传统的串联电容器补偿线路时,描绘了超临界霍普夫分叉。使用相同的补偿方案,即传统的串联电容器,当包括阻尼器绕组的动态特性时,可以解决超临界霍普夫分岔问题。另一方面,当通过TCSC对包括和忽略阻尼绕组动态的两种情况进行补偿时,可以预测出亚临界霍普夫分叉。在超临界霍普夫分叉的情况下,系统会通过环面崩溃而陷入混乱。另外,发现当通过TCSC进行补偿时,稳定工作点区域被扩大。此外,当忽略阻尼绕组时,稳定的工作点区域增加。还研究了TCSC控制器增益对Hopf分叉位置的影响。

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