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The impact of large scale wind power generation on power system oscillations

机译:大规模风力发电对电力系统振荡的影响

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Increasing amounts of wind turbines are connected to electrical power systems. This affects many aspects of their operation and behaviour. In this paper, the impact of large scale wind power generation on power system oscillations is treated. The three main types of power system oscillations, namely oscillations of a group of generators against a strong system and intra- and inter-area oscillations are studied. To this end, test systems are used. The effect of wind power on the oscillations is investigated by gradually replacing the power generated by the synchronous generators in the system by power from either constant or variable speed wind turbines, while observing the movement of the eigenvalues through the complex plane. From the results, it is concluded that the effect of wind power on power system oscillations depends on the wind turbine concept (constant or variable speed) and on the wind power penetration. In most cases, an increase in frequency and damping of power system oscillations was observed. This observation is caused by a relative reduction in size of the synchronous generators that engage in power system oscillations, which is equivalent to strengthening their mutual coupling. Further, it was shown that constant speed wind turbines damp power system oscillations more than variable speed turbines. This is caused by the damping effect of the squirrel cage induction generator used in constant speed wind turbines.
机译:越来越多的风力涡轮机连接到电力系统。这会影响其操作和行为的许多方面。本文研究了大规模风力发电对电力系统振荡的影响。研究了电力系统振荡的三种主要类型,即一组发电机对一个强系统的振荡以及区域内和区域间振荡。为此,使用测试系统。通过用恒速或变速风力涡轮机的动力逐渐替换系统中同步发电机产生的功率,研究风能对振荡的影响,同时观察特征值在复杂平面上的运动。从结果可以得出结论,风力对电力系统振荡的影响取决于风力涡轮机的概念(定速或变速)和风力渗透率。在大多数情况下,观察到频率增加和电力系统振荡衰减。这种观察是由于参与电力系统振荡的同步发电机尺寸相对减小所致,这相当于加强了它们的相互耦合。此外,已表明,恒速风力涡轮机比变速涡轮机更能抑制电力系统的振荡。这是由恒速风力涡轮机中使用的鼠笼式感应发电机的阻尼效应引起的。

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