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Methods to aggregate turbine and network impedance for wind farm resonance analysis

机译:用于涡轮机和风电场共振分析的涡轮机和网络阻抗的方法

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摘要

Small-signal sequence impedance models have been developed for different types of wind turbines and used in industry to study wind farm and high-voltage direct current (HVDC) system harmonics and resonances. Compared to other small-signal methods, a major advantage of system modelling and analysis based on sequence impedance is its scalability: an equivalent impedance model can be easily built for any complex system by aggregating the impedance of individual turbines and the network. A recent development in the small-signal sequence impedance theory is the modelling of frequency coupling to improve the accuracy of system analysis and explain a common characteristic of harmonics created by system resonance. In light of this new development, this study presents and compares different aggregation methods to build farm-level impedance models in the presence of coupling in individual turbine responses. The objective is to identify practical methods that can meet the needs of different system analyses and are easily to use. Experiences of China State Grid and TenneT with the application of sequence impedance models in renewable energy and HVDC system resonance and harmonic analysis are also discussed, along with an overview of their ongoing efforts to develop new grid codes and system analysis tools based on sequence impedances.
机译:已经为不同类型的风力涡轮机开发了小信号序序模型,用于工业,研究风电场和高压直流(HVDC)谐波和共振。与其他小信号方法相比,基于序列阻抗的系统建模和分析的主要优点是其可伸缩性:通过聚合各个涡轮机和网络的阻抗来容易地构建等效阻抗模型。小信号序阻抗理论的最新发展是频率耦合的建模,以提高系统分析的准确性,并解释系统共振创建的谐波的共同特征。鉴于这种新的发展,本研究介绍并比较了不同的聚合方法,以在各个涡轮响应的耦合情况下建立农场级阻抗模型。目标是识别实用方法,可以满足不同系统分析的需求,并且很容易使用。还讨论了中国国家电网和Tennet的经验,并讨论了可再生能源和HVDC系统共振和谐波分析中的序列阻抗模型,并概述了他们正在进行的基于序列阻抗开发新的网格码和系统分析工具的努力。

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