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Fundamental grid impedance estimation using grid-connected inverters: a comparison of two frequency-based estimation techniques

机译:基于网格连接逆变器的基本电网阻抗估计:比较两种基于频率的估计技术

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摘要

With the continuous increase in distributed energy resources that are being integrated into the utility grid, it becomes necessary for inverters to estimate the grid impedance online to be used for several applications. Despite the fact that online grid impedance estimation techniques using grid-connected inverters gained more attention recently, no comprehensive study has been evaluating the performance of different estimation techniques under several grid conditions. This study proposes an extensive comparison to assess the accuracy of two online frequency-based grid impedance estimation techniques at the fundamental frequency. These two techniques are based on the 75 Hz frequency injection technique and pseudo-random binary sequence injection, respectively. Results from MATLAB/Simulink and PLECS RT Box present the advantages and disadvantages of these estimation techniques and the required trade-offs. This comparison study analyses the effects of disturbance magnitude and its injection time, the variation of grid impedance and non-ideal grid voltage. Furthermore, solutions are proposed to enhance the estimation accuracy of both techniques for non-ideal grid voltage containing inter-harmonics and sub-harmonics. The study concludes with recommendations regarding the best use of these two frequency-based grid impedance estimation techniques to suit a particular low voltage grid scenario.
机译:随着集成到实用电网的分布式能量资源的连续增加,逆变器需要在线估计网格阻抗以用于若干应用。尽管在线电网阻抗估计技术最近使用基网连接逆变器获得更多关注,但在几个网格条件下没有综合研究已经评估了不同估计技术的性能。本研究提出了广泛的比较,以评估基于基于基于在线的基于网格阻抗估计技术的准确性。这两种技术基于75Hz频率注射技术和伪随机二进制序列注射。 MATLAB / SIMULINK和PLECS RT盒的结果呈现了这些估计技术的优缺点和所需的权衡。该比较研究分析了干扰幅度及其喷射时间的影响,电网阻抗和非理想电网电压的变化。此外,提出了解决方案以增强包含谐波间和子谐波的非理想电网电压两种技术的估计精度。该研究结论,关于最佳使用这两种基于频率的电网阻抗估计技术,以适应特定的低电压网格方案的建议。

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