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Modelling and performance analysis of wind farms: A case study of the ashegoda wind farm in Ethiopia

机译:风电场的建模和性能分析:以埃塞俄比亚的阿什格达风电场为例

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This paper deals with the impact of wind power integration on the transient stability and other operational indices of the power system. The paper starts off by introducing the use of generic wind turbine model for studies involving large scale wind power integration. Using the generic model derived, voltage and power at the point of common coupling as well as the swing curves of conventional synchronous generators following a major grid fault were computed and the critical fault clearing times were determined and compared with one another for different levels of wind integration. It was found out that using the currently established controller structure and parameter settings, the transient stability performance of the system deteriorates with increasing wind integration. However, it was also observed that there are a range of options to improve the performance of the system even to the extent of improving on the performance beyond the baseline scenario where there is no wind power generation at all. A 120-MW wind farm currently under installation in Ethiopia has been used for purposes of illustration. The result also gives insight into distinct features of wind power connected to the rest of the system via weak links.
机译:本文探讨了风电集成对电力系统暂态稳定性和其他运行指标的影响。本文首先介绍了使用通用风力涡轮机模型进行涉及大规模风电集成的研究。使用派生的通用模型,计算出主要电网故障后,公共耦合点的电压和功率以及常规同步发电机的摆动曲线,并确定了关键故障清除时间,并针对不同水平的风进行了相互比较。积分。结果发现,使用当前建立的控制器结构和参数设置,系统的暂态稳定性能会随着风积分的增加而降低。但是,还观察到,存在一系列提高系统性能的选项,甚至可以提高到根本没有风力发电的基准情景以外的性能。埃塞俄比亚正在安装的一个120兆瓦的风电场已用于说明。该结果还提供了对通过弱链接连接到系统其余部分的风力发电的独特功能的见解。

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