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首页> 外文期刊>IEEE Transactions on Energy Conversion >A wind park reduced-order model using singular perturbations theory
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A wind park reduced-order model using singular perturbations theory

机译:基于奇异摄动理论的风电场降阶模型

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Due to the increasing penetration of wind energy, it is necessary to possess design tools that are able to simulate the impact of these installations on electric utility grids. In order to provide a net contribution to this issue, a detailed wind park model has been developed and is briefly presented. However, the computational costs associated with the performance of such a detailed model in describing the behavior of a wind park composed by a considerable number of units may render its practical application very difficult. To overcome this problem, singular perturbations theory has been applied to reduce the order of the detailed wind park model, and therefore create the conditions for the development of a dynamic equivalent which is able to retain the relevant dynamics with respect to the existing AC power system. Validation results proving the ability of singular perturbations reduced order model to match the results provided by the detailed model are shown and commented upon.
机译:由于风能渗透的增加,有必要拥有能够模拟这些装置对公用电网的影响的设计工具。为了对此问题做出最终贡献,已开发并简要介绍了详细的风电场模型。然而,在描述由大量单元组成的风电场的性能时,与这种详细模型的性能相关的计算成本可能使其实际应用非常困难。为了克服这个问题,奇异摄动理论已被应用来减少详细的风电场模型的阶次,因此为开发动态等效项创造了条件,该等效项能够保留相对于现有交流电源系统的相关动态。 。验证结果证明了奇异摄动降阶模型与详细模型提供的结果相匹配的能力,并对它们进行了评论。

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