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首页> 外文期刊>ETEP-European Transactions on Electrical Power >Optimal sizing of large-scale wind system with time-sharing wind power curtailment
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Optimal sizing of large-scale wind system with time-sharing wind power curtailment

机译:限时共享风电功率削减的大型风电系统优化尺寸

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Because of the development of grids lagging behind the growing of wind power penetration level, the enthusiasm of wind farm owner is frustrated for the installed capacity being limited by the flexibility of the existing systems. There is increasing interest to use a balanced amount of wind power curtailment (WPC) as a decision variable during the high wind-speed periods and hard peaking periods to buffer the limitation, thereby obtaining an additional installed capacity and net benefit from the wind farm owner viewpoint. With taking an hour as the time scale, the effect of time-sharing wind-speed distribution and time-sharing peaking characteristics of wind power on WPC has been successfully introduced into the model. A valid strategy of time-sharing WPC is proposed herein through describing the wind-speed probability distributions in different scenarios. Based on the cost-benefit analysis, a model is established to determine the appropriate time-sharing curtailment, hereby providing the optimal installed capacity. IEEE 30 nodes system and a hydroelectric-intensive actual system in China are both used to verify the effectiveness of the proposed model. And in the case of the hydroelectric-intensive system, optimal results indicate that there is an increase of 31.56% in installed capacity and 98.64% in net benefit of wind farm by allowing a mere 4.279% curtailed energy. Meanwhile, several sensitivity analyses including the time scale, point of common coupling, confidence level, wind turbine types, on-grid price, and investment cost are conducted to evaluate the influence of key parameters on this optimal capacity. This approach can help with better understanding the interactions between curtailment and wind hosting capacity of systems.
机译:由于电网的发展落后于风能渗透水平的提高,风电场所有者的热情因现有系统的灵活性限制了装机容量而感到沮丧。人们越来越有兴趣在高风速时段和硬高峰时段使用平衡的风电削减(WPC)作为决策变量来缓冲限制,从而从风电场所有者那里获得额外的装机容量和净收益观点。以一个小时为时标,已成功将分时风速分布和风电分时峰值特性对WPC的影响引入了模型。本文通过描述不同场景下的风速概率分布,提出了一种分时WPC的有效策略。基于成本效益分析,建立一个模型来确定适当的分时削减,从而提供最佳的装机容量。 IEEE 30节点系统和中国的水电密集型实际系统均用于验证该模型的有效性。对于水力发电密集型系统,最佳结果表明,仅减少4.279%的能耗,风电场的装机容量将增加31.56%,风电场的净收益将增加98.64%。同时,进行了一些敏感性分析,包括时间尺度,公共耦合点,置信度,风力涡轮机类型,并网价格和投资成本,以评估关键参数对该最佳容量的影响。这种方法可以帮助更好地了解缩减和系统的风能承载能力之间的相互作用。

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