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On DC-Side Impedance Frequency Characteristics Analysis and DC Voltage Ripple Prediction under Unbalanced Conditions for MMC-HVDC System Based on Maximum Modulation Index

机译:基于最大调制指数的MMC-HVDC系统不平衡条件下直流侧阻抗频率特性分析及直流电压纹波预测

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摘要

In this study, we first briefly introduce the effect of circulating current control on the modulation signal of a modular multilevel converter (MMC). The maximum modulation index is also theoretically derived. According to the optimal modulation index analysis and the model in the continuous domain, different DC-side output impedance equivalent models of MMC with/without compensating component are derived. The DC-side impedance of MMC inverter station can be regarded as a series xR + yL + zC branch in both cases. The compensating component of the maximum modulation index is also related to the DC equivalent impedance with circulating current control. The frequency characteristic of impedance for MMC, which is observed from its DC side, is analyzed. Finally, this study investigates the prediction of the DC voltage ripple transfer between two-terminal MMC high-voltage direct current systems under unbalanced conditions. The rationality and accuracy of the impedance model are verified through MATLAB/Simulink simulations and experimental results.
机译:在本研究中,我们首先简要介绍循环电流控制对模块化多电平转换器(MMC)的调制信号的影响。从理论上也可以得出最大调制指数。根据最优调制指数分析和连续域模型,推导了带/不带补偿分量的MMC的不同直流侧输出阻抗等效模型。在两种情况下,MMC逆变器站的直流侧阻抗都可以看作是串联的xR + yL + zC分支。最大调制指数的补偿分量还与循环电流控制下的直流等效阻抗有关。分析了从直流侧观察到的MMC阻抗的频率特性。最后,本研究调查了在不平衡条件下两端子MMC高压直流系统之间的直流电压纹波转移的预测。通过MATLAB / Simulink仿真和实验结果验证了阻抗模型的合理性和准确性。

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