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首页> 外文期刊>IEEE Transactions on Power Systems >Torsional Stability of Hydropower Units Under Influence of Subsynchronous Oscillations
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Torsional Stability of Hydropower Units Under Influence of Subsynchronous Oscillations

机译:次同步振荡影响下水力发电机组的扭转稳定性

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摘要

Hydropower units are known to be comparatively insensitive to subsynchronous power oscillations. During a startup test of an electrical island in the Nordic power system, a series capacitor tripped due to a subsynchronous oscillation within the normal frequency range of hydropower unit torsional modes. Since no thermal units were connected, it is motivated to question the traditional view. In this paper, the small-signal and transient torsional mode stability of hydropower units are assessed through time-domain simulations. The model is based on the first IEEE benchmark model for subsynchronous resonance which has been tuned to fit one of the startup test system units for which detailed measurements are available. The stability conditions are investigated for several load conditions and machine configurations. It is found that the damping in the startup test system is sufficient to prevent growing oscillations. A fault however could expose the machines to high transient torques.
机译:已知水力发电机对次同步功率振荡相对不敏感。在北欧电力系统中电岛的启动测试期间,由于在水力发电机组扭转模式的正常频率范围内出现次同步振荡,串联电容器跳闸。由于没有连接热单元,因此有动机质疑传统观点。本文通过时域仿真评估了水电机组的小信号和暂态扭转模式稳定性。该模型基于用于次同步谐振的第一个IEEE基准模型,该模型已进行了调整,以适合可以进行详细测量的启动测试系统单元之一。研究了几种负载条件和机器配置的稳定性条件。发现启动测试系统中的阻尼足以防止振荡增大。但是,故障可能会使机器承受高瞬态扭矩。

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