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Assessment Method of Wind Farm Harmonic Emission Level Based on Improved Covariance Characteristic of Random Vectors

机译:基于改进随机载体协调性特征的风电场谐波排放水平评估方法

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The wind farm side harmonic impedance could not be neglected when assessing the wind farm harmonic emission level. Because of the low impedance characteristic of the wind turbine filter. This paper presents a new method to estimate the wind farm harmonic emission level at the point of common coupling (PCC) based on improved covariance characteristic of random vectors. According to the topological structure of the wind farm, the equivalent harmonic impedance of the wind farm is calculated, with the measured data at PCC the wind farm harmonic source is obtained. Since the system side harmonic source and wind farm side harmonic source are approximately independent, the background harmonic related term can be eliminated by using the covariance characteristic, then the system side harmonic impedance can be calculated. We can calculate the wind farm harmonic emission level. The harmonic impedances of wind turbines are aggregated to simplify the calculation of the wind farm side harmonic impedance. Based on the results of simulation and measured data, it verifies that the proposed method is effective to eliminate the background interference when evaluate wind farm harmonic emission level, and the proposed method is also effective when the background harmonic is large.
机译:在评估风电场谐波排放水平时,风电场副谐波阻抗无法忽视。由于风力涡轮机过滤器的低阻抗特性。本文基于改进的随机载体的协方识,呈现了一种估计公共耦合点(PCC)的风电场谐波发射水平的新方法。根据风电场的拓扑结构,计算风电场的等效谐波阻抗,通过PCC测量的数据获得风电场谐波源。由于系统侧谐波源和风电场侧谐波源大致独立,因此可以通过使用协方差特性来消除背景谐波相关术语,然后可以计算系统侧谐波阻抗。我们可以计算风电场谐波排放水平。风力涡轮机的谐波阻抗被聚集以简化风力场侧谐波阻抗的计算。基于仿真和测量数据的结果,它验证了所提出的方法对于在评估风电场谐波发射水平时消除背景干扰,并且当背景谐波大时,所提出的方法也有效。

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