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Energy-Based State-Space Representation of Modular Multilevel Converters with a Constant Equilibrium Point in Steady-State Operation

机译:基于能量的状态空间表示模块化多电平变换器在稳态运行中具有恒定平衡点

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摘要

The internal currents and voltages of Modular Multilevel Converters (MMCs) contain multiple frequency components in steady state operation and remain time-periodic even when transformed into a synchronously rotating reference frame. This prevents a straightforward state-space representation where a constant equilibrium point is reached and all state variables converge to constant values under steady-state conditions. Such steady-state time-invariant (SSTI) representations, generally obtained by Park's transformation as commonly applied in vector-oriented control of power converters, are needed for linearization and eigenvalue-based analysis of small-signal stability. This paper presents an energy-based model of an MMC with a modulation strategy where the insertion indices are compensated for the oscillations in the sum arm voltage. The formulation of the model allows for deriving, by the application of Park transformations at three different frequencies, a SSTI representation that accurately captures the internal dynamics of the MMC. This model can be simplified to a reduced order model that maintains accurate reproduction of the external behavior at the ac- and dc-sides while neglecting some of the internal dynamics. The validity and accuracy of these two SSTI MMC models are verified by time-domain simulations and their utilization for eigenvalue-based analysis of MMC dynamics is demonstrated by examples. OAPA
机译:模块化多电平转换器(MMC)的内部电流和电压在稳态操作中包含多个频率分量,即使转换为同步旋转的参考系,也保持时间周期。这防止了在达到恒定平衡点并且所有稳态变量在稳态条件下都收敛为恒定值的简单状态空间表示。这种线性化和基于特征值的小信号稳定性分析通常需要这种稳态时不变(SSTI)表示形式,该表示形式通常通过Park变换获得,通常用于功率转换器的矢量控制。本文提出了一种具有调制策略的基于MMC的基于能量的模型,其中插入索引针对总臂电压的振荡进行了补偿。该模型的制定允许通过在三个不同频率上应用Park变换来推导SSTI表示,该表示可以准确地捕获MMC的内部动态。可以将该模型简化为降阶模型,该模型在忽略某些内部动态特性的同时,可以在交流和直流侧保持准确再现外部行为。通过时域仿真验证了这两个SSTI MMC模型的有效性和准确性,并通过示例证明了它们在基于特征值的MMC动力学分析中的应用。 OAPA

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