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On the Dynamics of Inherent Balancing of Modular Multilevel DC–AC–DC Converters

机译:关于模块化多电平直流电-CO-DC转换器固有平衡的动态

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Modular multilevel dc-ac-dc converters (MMDACs) serve as an enabler for dc distribution systems. The modular multilevel structure enables flexible voltage transforms, but raises issues over balancing of the submodule (SM) capacitor voltages. This letter focuses on the dynamics of inherent balancing of MMDACs under circulant modulation. We provide an invariance-like result using a variant of Barbalat's Lemma and prove that the SM capacitor voltages converge to the kernel of the circulant switching matrix, which is the intersection of the invariant sets for each switching state. We further interpret the balancing dynamics as a permuted linear time-invariant system and prove that the envelop of the balancing trajectories is governed by the eigenvalues of the permuted state-transition matrix. This result extends previous full-rank criterion for inherent balancing in a steady state and provides new insight into the dynamic behavior of MMDACs.
机译:模块化多级DC-AC-DC转换器(MMDAC)用作直流配电系统的启动器。模块化多级结构使得能够灵活的电压变换,但在子模块(SM)电容电压的平衡上提高了问题。这封信侧重于循环调制下MMDAC的内在平衡的动态。我们使用Barbalat Lemma的变型提供了一种不变性的结果,并证明SM电容器电压会聚到循环切换矩阵的内核,这是每个开关状态的不变集的交叉点。我们进一步将平衡动力学解释为允许的线性时间不变系统,并证明平衡轨迹的包围由允许的状态转换矩阵的特征值控制。此结果将先前的全秩标准扩展到稳定状态的固有平衡,并提供新的洞察MMDAC的动态行为。

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