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Hierarchical model predictive control of modular multilevel matrix converter for low frequency AC transmission

机译:低频交流输电模块化多电平矩阵变换器的层次模型预测控制

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摘要

The modular multilevel matrix converter (M3C) applied to a low frequency alternating current (LFAC) transmission system is investigated. Due to the complexity and tight coupling of the converter, a novel hierarchical model predictive control (MPC) scheme with a cascaded structure of power control, capacitor voltage averaging and balancing control for M3C is proposed. The terminal behavioral model of M3C is derived out and the fast separated space-vectors approximation method is realized. The proposed scheme clearly achieves the system-level multi-objective control without the empirical procedure of the weighting factor design and significantly reduces the computational cost. This is the first time to apply the MPC to a converter in a hierarchical structure. Simulation results of a 7-level M3C are provided to illustrate the system's performance.
机译:研究了应用于低频交流电(LFAC)传输系统的模块化多级矩阵转换器(M3C)。由于转换器的复杂性和紧密耦合性,提出了一种新型的分级模型预测控制(MPC)方案,该方案具有功率控制,电容器电压平均和平衡控制的级联结构。推导了M3C的终端行为模型,实现了快速分离的空间矢量逼近方法。所提出的方案明显地实现了系统级的多目标控制,而没有加权因子设计的经验程序,并且显着降低了计算成本。这是第一次将MPC应用于层次结构的转换器。提供了7级M3C的仿真结果以说明系统的性能。

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