Insert impact of large-scale wind power generation on the dynamic behaviour of interconnected systems

I. Erlich, F. Shewarega
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引用次数: 21

Abstract

This paper deals with the impact of increased wind power generation on the behavior of the interconnected system during and after a contingency situation. The issues considered are the post-fault damping behavior of electromechanical oscillations, performance during a severe short-circuit and frequency stability after a sudden loss of generation. First, the doubly-fed induction (DFIM) based wind turbine and a conventional synchronous generator were simulated in a standalone mode to demonstrate the fundamental differences in terms of their damping behavior. The model was then extended to investigate the characteristic behavior of the DFIM during a severe fault to assess the limits of its fault ride-through capability. Finally, using a large interconnected system the effect of increased wind power generation on the frequency stability of the system after a loss of generation has been discussed.
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插入大型风力发电对互联系统动态行为的影响
本文讨论了在突发事件发生期间和之后,风力发电增加对互联系统行为的影响。考虑的问题是故障后机电振荡的阻尼行为,严重短路期间的性能和突然断电后的频率稳定性。首先,对基于双馈感应(DFIM)的风力发电机和传统同步发电机在独立模式下进行了仿真,以证明它们在阻尼行为方面的根本差异。然后将该模型扩展到研究DFIM在严重故障期间的特征行为,以评估其故障穿越能力的极限。最后,利用一个大型互联系统,讨论了风电发电量增加对系统失电后频率稳定性的影响。
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