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Automated sequence impedance modeling of three-phase converters based on computer algebra

机译:基于计算机代数的三相变流器自动序列阻抗建模

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Sequence impedance models have been accepted as an effective method for resonance and stability analysis of renewable energy, high-voltage dc transmission and other three-phase power electronics systems. While such impedance models can be obtained in numerical form by simulation or measurement, the analytical models such as those presented in [2, 3] provide invaluable insight into how impedance behavior relates to circuit and control design. Developing such analytical models, however, requires special skills and has been limited to few specialists. To facilitate the application of the method, this paper presents automated generation of sequence impedance models using computer algebra. The preliminary program that is capable of performing this function is developed based on a new matrix formulation of the underlying harmonic linearization method [7] and is implemented in Mathematica. Applications in two-level voltage-source converter and modular multilevel converters are presented to demonstrate the feasibility of the method.
机译:序列阻抗模型已被接受为可再生能源,高压直流输电和其他三相电力电子系统的谐振和稳定性分析的有效方法。虽然可以通过仿真或测量以数字形式获得此类阻抗模型,但诸如[2,3]中所示的分析模型可以提供有关阻抗行为与电路和控制设计之间的关系的宝贵见解。但是,开发此类分析模型需要特殊技能,并且仅限于少数专家。为了促进该方法的应用,本文提出了使用计算机代数自动生成序列阻抗模型的方法。基于底层谐波线性化方法[7]的新矩阵公式,开发了能够执行此功能的初步程序,并在Mathematica中实现。介绍了在两级电压源转换器和模块化多级转换器中的应用,以证明该方法的可行性。

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