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A Self-commissioning Notch Filter for Active Damping in a Three-Phase LCL -Filter-Based Grid-Tie Converter

机译:基于三相LCL滤波器的网格并网变换器中有源阻尼的自调试陷波滤波器

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摘要

LCL-filters are a cost-effective solution to mitigate harmonic current content in grid-tie converters. In order to avoid stability problems, the resonance frequency of LCL-filters can be damped with active techniques that remove dissipative elements but increase control complexity. A notch filter provides an effective solution, however tuning the filter requires considerable design effort and the variations in the grid impedance limit the LCL-filter robustness. This paper proposes a straightforward tuning procedure for a notch filter self-commissioning. In order to account for the grid inductance variations, the resonance frequency is estimated and later used for tuning the notch filter. An estimation for the maximum value of the proportional gain to excite the resonance is provided. The resonance frequency is calculated using the Goertzel algorithm, which requires little extra computational resources in the existing control processor. The discrete Fourier transform coefficients are therefore obtained, with less calculations than the running sum implementation and less memory requirements than with the fast Fourier transform (FFT). Thus, the self-commissioning technique is robust to grid impedance variations due to its ability to tune the grid-tie inverter on-site. Finally, the analysis is validated with both simulation and experiments.
机译:LCL滤波器是一种经济有效的解决方案,可减轻并网转换器中的谐波电流含量。为了避免出现稳定性问题,可以使用有源技术来衰减LCL滤波器的谐振频率,这些有源技术可以消除耗散元件,但会增加控制复杂性。陷波滤波器提供了一种有效的解决方案,但是调整滤波器需要大量的设计工作,并且电网阻抗的变化限制了LCL滤波器的耐用性。本文提出了一种陷波滤波器自调试的简单调整程序。为了解决电网电感变化,估算谐振频率,然后将其用于调谐陷波滤波器。提供了用于激励共振的比例增益最大值的估计。共振频率是使用Goertzel算法计算的,该算法在现有控制处理器中几乎不需要额外的计算资源。因此,获得的离散傅立叶变换系数的计算量少于运行总和的实现量,并且与快速傅立叶变换(FFT)相比,所需的存储量更少。因此,自调试技术由于其在现场调整并网逆变器的能力而对电网阻抗变化具有鲁棒性。最后,通过仿真和实验对分析结果进行了验证。

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