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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >A Numerical Matrix-Based Method for Stability and Power Quality Studies Based on Harmonic Transfer Functions
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A Numerical Matrix-Based Method for Stability and Power Quality Studies Based on Harmonic Transfer Functions

机译:基于谐波传递函数的基于数值矩阵的稳定性和电能质量研究方法

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摘要

Some couplings exist between the positive- and negative-sequence impedances of a voltage-sourced power converter especially in the low frequency range due to the nonlinearities and low-bandwidth control loops such as the phase-locked loop. In this paper, a new numerical method based on the harmonic transfer function for analysis of the linear time periodic systems is presented, which is able to handle these couplings. In a balanced three-phase system, there is only one coupling term, but in an unbalanced (asymmetrical) system, there are more couplings, and therefore, in order to study the interactions between these couplings a matrix-based method should be used. No information about the structure of the converter is needed and elements are modeled as black boxes with known terminal characteristics. The proposed method is applicable for both power quality (harmonic and interharmonic emissions) and stability studies, which is verified by simulations in this paper.
机译:由于非线性和诸如锁相环之类的低带宽控制环路,电压源功率转换器的正序和负序阻抗之间存在某些耦合,尤其是在低频范围内。本文提出了一种基于谐波传递函数的线性时间周期系统数值分析方法,该方法能够处理这些耦合问题。在平衡的三相系统中,只有一个耦合项,但是在不平衡的(非对称)系统中,耦合项更多,因此,为了研究这些耦合项之间的相互作用,应使用基于矩阵的方法。不需要有关转换器结构的信息,并且将元素建模为具有已知端子特性的黑匣子。所提出的方法既适用于电能质量(谐波和间谐波发射)又适用于稳定性研究,本文的仿真对此进行了验证。

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