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Frequency Adaptability of Harmonics Controllers for Grid-Interfaced Converters

机译:用于并网转换器的谐波控制器的频率适应性

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摘要

A wider spread adoption of power electronic converters interfaced renewable energy systems has brought more attention to harmonic issues to the electrical grid, and means are taken to improve it in the control. More advanced closed-loop harmonic controllers are thus demanded to enhance the renewable energy integration in order to be grid-friendly. However, usually being treated as a constant factor in the design of harmonic controllers, the grid frequency varies with the generation-load imbalance, and thus may lead to deterioration of the power quality. This paper explores the frequency sensitivity of the most popular harmonic controllers for grid-interfaced converters. The frequency adaptability of these harmonic controllers is evaluated in the presence of a variable grid frequency within a specified reasonable range, e.g., +-1% of the nominal grid frequency (50 Hz). Solutions to the improvement of the frequency variation immunity of the discussed harmonic controllers are also emphasized. Case studies of a single-phase grid- connected photovoltaic system are provided to verify the analysis.
机译:连接可再生能源系统的电力电子转换器的广泛采用已引起人们对电网谐波问题的更多关注,并采取了改善其控制的方法。因此需要更先进的闭环谐波控制器来增强可再生能源的集成,以使其对电网友好。然而,在谐波控制器的设计中通常将其视为恒定因素,电网频率会随着发电负荷的不平衡而变化,从而可能导致电能质量的下降。本文探讨了用于电网接口转换器的最流行的谐波控制器的频率灵敏度。在规定的合理范围内(例如额定电网频率(50 Hz)的+ 1%)内存在可变电网频率时,将评估这些谐波控制器的频率适应性。还强调了改善所讨论的谐波控制器的频率变化抗扰性的解决方案。提供了单相并网光伏系统的案例研究以验证分析。

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