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An improved complex ICA based method for wind farm harmonic emission levels evaluation

机译:一种改进的基于复杂ICA的风电场谐波排放水平评估方法

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摘要

Wind farms, as typical renewable energy infrastructure, provide clean energy to the power grid but also inevitably generate harmonic pollution. In the case of a multi-wind farms system, evaluating the harmonic emissions for each farm is essential for the division of harmonic responsibility and the design of the harmonic mitigation scheme. However, this evaluation process faces two challenges. First, the background harmonics of a single wind farm might be unstable. In addition, the harmonic impedance of wind farm side is reduced by the installation of filters. As a result, traditional evaluation methods are no longer applicable. Complex independent component analysis is a well-known method for evaluating harmonic emissions. To make this method feasible in the above situations, we analyze its shortcomings. Furthermore, an improved method is proposed by introducing two screening mechanisms based on sparse component analysis and the maximization of hybrid negentropy. Additionally, the results of simulations and field case verification indicate that the traditional methods have large calculation errors when the background harmonics fluctuate greatly or the harmonic impedance of the wind farm side is not far larger than that of the utility side. In contrast, our novel evaluation method has high precision in the above cases.
机译:风电场作为典型的可再生能源基础设施,可为电网提供清洁能源,但也不可避免地会产生谐波污染。对于多风电场系统,评估每个电场的谐波排放对于划分谐波责任和设计谐波缓解方案至关重要。但是,该评估过程面临两个挑战。首先,单个风电场的背景谐波可能不稳定。另外,通过安装滤波器可以降低风电场侧的谐波阻抗。结果,传统的评估方法不再适用。复杂的独立分量分析是一种评估谐波发射的众所周知的方法。为了使该方法在上述情况下可行,我们分析其缺点。此外,提出了一种改进的方法,该方法通过引入两种基于稀疏成分分析和混合负熵最大化的筛选机制。另外,仿真结果和现场实例验证表明,当背景谐波波动较大或风电场侧的谐波阻抗不大于公用事业侧的谐波阻抗时,传统方法存在较大的计算误差。相反,在上述情况下,我们新颖的评估方法具有较高的精度。

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