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Wind Farm Modeling For Reliability Assessment from the Viewpoint of Interconnected Systems

机译:从互联系统的角度进行风电场可靠性评估的建模

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摘要

Improvement in power system reliability is considered today to be one of the main system planning needs. Meanwhile, there is a growing tendency toward reliability studies considering renewable energies. In this article, for reliability assessment of a power system including wind power, an analytical method based on the frequency and duration approach is utilized to model a wind farm as a multi-state conventional unit. A suitable time-series model—the auto-regressive moving average— is employed in this study to predict wind speeds. The equivalent unit approach is modeled, representing the benefits of interconnection between the two systems in terms of an equivalent multi-state unit. This model includes the constraints and parameters of the tie-lines interconnecting the two systems. Results confirm that the adequacy of the generating capacity in a power system is normally improved by interconnecting the system to another power system. To do so, the wind farm is considered as an assisting system for a test system, and reliability indices of the total system are then calculated.
机译:今天,提高电力系统的可靠性被认为是主要的系统规划需求之一。同时,考虑可再生能源的可靠性研究的趋势正在增长。在本文中,为了评估包括风力发电在内的电力系统,利用基于频率和持续时间方法的分析方法对作为多状态常规机组的风电场进行建模。在这项研究中,采用了合适的时间序列模型(自回归移动平均值)来预测风速。对等效单元方法进行了建模,以等效多状态单元的形式表示了两个系统之间互连的好处。该模型包括互连两个系统的联络线的约束和参数。结果证实,通过将系统互连到另一个电力系统,通常可以提高电力系统中发电容量的充足性。为此,将风电场视为测试系统的辅助系统,然后计算整个系统的可靠性指标。

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