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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Generalized Single-Phase Harmonic State Space Modeling of the Modular Multilevel Converter With Zero-Sequence Voltage Compensation
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Generalized Single-Phase Harmonic State Space Modeling of the Modular Multilevel Converter With Zero-Sequence Voltage Compensation

机译:具有零序电压补偿的模块化多电平转换器的广义单相谐波状态空间建模

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摘要

The modular multilevel converter (MMC) has attracted extensive research in recent years. An appropriate model is necessary to analyze stability or to design MMC controllers. Several published MMC models have been derived in single-phase form to simplify the modeling mathematics. However, little attention is given to the zero-sequence voltage, which introduces coupling in the single-phase model and leads to significant error. In this paper, after revealing the mechanism behind the zero-sequence voltage, a more accurate generalized single-phase MMC model is proposed, which eliminates the zero-sequence voltage coupling effect and is linearized based on harmonic state space (HSS) theory to precisely characterize the internal harmonic features of MMC. A systematic HSS modeling process is presented for both open-loop and closed-loop conditions. And the proposed model is generalized as it can incorporate different control strategy by controller transfer function substitution. Hence it is valuable to analyze MMC stability and dynamics. Model effectiveness is verified by simulation results.
机译:模块化多电平转换器(MMC)近年来吸引了广泛的研究。一个适当的模型对于分析稳定性或设计MMC控制器是必需的。已经以单相形式导出了一些已发布的MMC模型,以简化建模数学。但是,对零序电压的关注却很少,这会在单相模型中引入耦合并导致明显的误差。本文在揭示了零序电压背后的机理后,提出了一种更精确的广义单相MMC模型,该模型消除了零序电压耦合效应,并基于谐波状态空间(HSS)理论进行了线性化。表征MMC的内部谐波特征。针对开环和闭环条件,提出了系统的HSS建模过程。由于该模型可以通过控制器传递函数的替换来融合不同的控制策略,因此被推广。因此,分析MMC的稳定性和动态性很有价值。仿真结果验证了模型的有效性。

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