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Modelling and analysis of equivalent SISO d-q impedance of grid-connected converters

机译:网格连接转换器等效SISO D-Q阻抗的建模与分析

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摘要

Small-signal stability of three-phase grid-connected converters can be analysed by using the impedance-based method in d-q frame. Based on this approach, the d-q impedance models of both source and load subsystems are represented with 2-by-2 matrices, and their ratio (known as the return ratio matrix) is used for stability assessment. This, however, requires to apply the generalized Nyquist criterion (GNC), due to the intrinsic multi-input multi-output (MIMO) property of the d-q system. During the process, some complexities are inevitably caused because of the need to calculate the ratio of the impedance matrices, and to obtain the eigenvalues of the return ratio matrix. In this context, this paper presents an equivalent single-input single-output (SISO) model for the d-q impedance of three-phase grid-connected converters, which leads to two scalar impedance ratios of d- and q-axis, instead of the conventional 2-by-2 return ratio matrix. Consequently, the stability of the two SISO systems can be analysed by using the classic Nyquist stability criterion (NC), resulting in a much simpler and more intuitive analysis process than GNC. The equivalence between the original MIMO d-q impedance model and the proposed SISO model in stability assessment is verified by comparing their stability conditions. As an example of applying this approach, the effects of PLL, grid impedance, and power control on a grid-connected converter are investigated. The performed analysis is finally validated by Matlab/Simulink simulations.
机译:通过使用D-Q帧中的基于阻抗的方法可以分析三相网格连接转换器的小信号稳定性。基于这种方法,源和负载子系统的D-Q阻抗模型用2×2矩阵表示,它们的比率(称为返回比矩阵)用于稳定性评估。但是,这需要应用广义奈奎斯特标准(GNC),这是由于D-Q系统的内在多输入多输出(MIMO)属性。在此过程中,某些复杂性不可避免地引起,因为需要计算阻抗矩阵的比率,并获得返回比矩阵的特征值。在这种情况下,本文提出了一种用于三相网格连接转换器的DQ阻抗的等效单输入单输出(SISO)模型,其导致D-和Q轴的两个标量阻抗比,而不是传统的2×2返回比矩阵。因此,可以通过使用经典的奈奎斯特稳定性标准(NC)来分析两个SISO系统的稳定性,从而比GNC更简单,更直观的分析过程。通过比较其稳定性条件,验证了原始MIMO D-Q阻抗模型与稳定性评估中所提出的SISO模型之间的等价。作为应用这种方法的示例,研究了PLL,网格阻抗和电力控制对网格连接转换器的影响。最终通过Matlab / Simulink模拟验证所执行的分析。

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