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Harmonic Propagation and Interaction Evaluation between Small-Scale Wind Farms and Nonlinear Loads

机译:小型风电场与非线性载荷之间的谐波传播和相互作用评估

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摘要

Distributed generation is a flexible and effective way to utilize renewable energy. The dispersed generators are quite close to the load, and pose some power quality problems such as harmonic current emissions. This paper focuses on the harmonic propagation and interaction between a small-scale wind farm and nonlinear loads in the distribution grid. Firstly, by setting the wind turbines as P – Q(V) nodes, the paper discusses the expanding Newton-Raphson power flow method for the wind farm. Then the generalized gamma mixture models are proposed to study the non-characteristic harmonic propagation of the wind farm, which are based on Gaussian mixture models, improved phasor clustering and generalized Gamma models. After the integration of the small-scale wind farm, harmonic emissions of nonlinear loads will become random and fluctuating due to the non-stationary wind power. Furthermore, in this paper the harmonic coupled admittance matrix model of nonlinear loads combined with a wind farm is deduced by rigorous formulas. Then the harmonic propagation and interaction between a real wind farm and nonlinear loads are analyzed by the harmonic coupled admittance matrix and generalized gamma mixture models. Finally, the proposed models and methods are verified through the corresponding simulation models in MATLAB/SIMULINK and PSCAD/EMTDC.
机译:分布式发电是一种灵活有效的利用可再生能源的方式。分散的发电机非常靠近负载,并且会带来一些电能质量问题,例如谐波电流发射。本文着重研究小型风电场与配电网中非线性负载之间的谐波传播和相互作用。首先,通过将风力涡轮机设置为P – Q(V)节点,讨论了扩展的风电场牛顿-拉夫森潮流方法。然后基于高斯混合模型,改进的相量聚类和广义伽马模型,提出了广义伽马混合模型来研究风电场的非特征谐波传播。小型风电场整合后,由于非平稳风力发电,非线性负载的谐波发射将变得随机且波动。此外,本文采用严格的公式推导了非线性负荷与风电场相结合的谐波耦合导纳矩阵模型。然后,通过谐波耦合导纳矩阵和广义伽玛混合模型分析实际风电场与非线性负载之间的谐波传播和相互作用。最后,通过MATLAB / SIMULINK和PSCAD / EMTDC中的相应仿真模型对提出的模型和方法进行了验证。

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