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Small signal dynamic DQ model of Modular Multilevel Converter for system studies

机译:模块化多电平转换器的小信号动态DQ模型用于系统研究

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摘要

Summary form only given: This article presents three dynamic linear state space models of Modular Multilevel Converter (MMC) which are suitable for small-signal dynamic studies and controller design. The three models differ by the number of states (two, six and ten) and therefore are suitable for different applications based on the required accuracy. The 2nd and 6th order models ignore dynamics of the second harmonics and circulating current suppression control. The main challenges of dynamic analytical modelling of MMC are the non-linear multiplication terms in equations for modulating oscillating signals. The multiplication non-linear terms is therefore considered directly in the rotating DQ frame. This requires simultaneous modeling in zero sequence, fundamental frequency DQ and double fundamental frequency DQ2 frames. The proposed linear analytical models are implemented in state-space in MATLAB. The validity and accuracy of the models are verified against detailed 401 level MMC model in PSCAD/EMTDC in both: time and frequency domains. The results show very good accuracy for the 10th order model and decreasing accuracy for the lower order models.
机译:仅给出摘要形式:本文介绍了适用于小信号动态研究和控制器设计的模块化多电平转换器(MMC)的三个动态线性状态空间模型。这三种模型的状态数不同(两种,两种和十种),因此根据所需的精度适用于不同的应用。二阶和六阶模型忽略了二次谐波的动力学和循环电流抑制控制。 MMC动态分析建模的主要挑战是方程式中的非线性乘法项,用于调制振荡信号。因此,乘法非线性项直接在旋转DQ帧中考虑。这需要在零序列,基本频率DQ和双基本频率DQ2帧中同时建模。所提出的线性分析模型是在MATLAB的状态空间中实现的。针对PSCAD / EMTDC中详细的401级MMC模型,在时域和频域均验证了模型的有效性和准确性。结果表明,对于10阶模型,其精度非常好,而对于低阶模型,其精度却有所下降。

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