Performance Evaluation of TCSC and GCSC for Damping of Torsional Oscillations

P. K. Gandhi, P. Darji
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Abstract

This paper presents the mathematical modeling of a thyristor-controlled series compensator (TCSC) and gate-controlled series capacitor (GCSC) in a turbine generator system to dampen torsional oscillations due to sub-synchronous resonance (SSR). The parameters of transmission line and turbine generator unit are adapted from IEEE first benchmark model (FBM) for examining stability analysis. The system is found potentially unstable when frequency of SSR mode meets the frequency of torsional modes due to change in fixed compensation of transmission line. Thus, this paper shows the application of TCSC and GCSC to demonstrate the damping of torsional modes in IEEE FBM. The eigenvalue analysis and time-domain results verify the effectiveness of TCSC and GCSC for damping of torsional mode oscillations under unstable conditions. MATLAB/Simulink is used for simulation studies.
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TCSC和GCSC对扭振阻尼性能的评价
本文建立了水轮发电系统中可控硅串联补偿器(TCSC)和门控串联电容(GCSC)抑制次同步谐振(SSR)引起的扭振的数学模型。输电线路和汽轮发电机组的参数采用IEEE第一基准模型(FBM)进行稳定性检验分析。由于输电线路固定补偿的变化,当SSR模式的频率满足扭转模式的频率时,系统存在潜在的不稳定。因此,本文展示了TCSC和GCSC在IEEE FBM中扭转模态阻尼的应用。特征值分析和时域结果验证了TCSC和GCSC对不稳定条件下扭转模态振动阻尼的有效性。采用MATLAB/Simulink进行仿真研究。
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