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Design and Implementation of a Distributed Control Structure for Modular Multilevel Matrix Converter

机译:模块化多级矩阵转换器的分布式控制结构的设计与实现

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The modular multilevel matrix converter (M3C) is a direct ac/ac topology that is promising in the medium-voltage high-power application. However, the current M3C mainly adopts the centralized control structure which may hinder its modularity and flexibility. So a distributed control structure and corresponding design principles are proposed to realize the distribution of control tasks and improve the expandability. The input, output and balancing control is based on the double αβ0 transformation, and the real-time current loop is established in the abc coordinate frame in each slave controller independently. Since the distributed control is decoupling in time dimension, the low-cost Controller-Area-Network (CAN) bus is enough to transmit the slow voltage loop data. The effectiveness of the proposed distributed control structure is verified on a laboratory M3C prototype.
机译:模块化多级矩阵转换器(M3C)是一种直接的AC / AC拓扑,在中电压大功率应用中具有很有希望。然而,目前的M3C主要采用集中控制结构,这可能阻碍其模块化和灵活性。因此,提出了分布式控制结构和相应的设计原理来实现控制任务的分布,提高可扩展性。输入,输出和平衡控制基于双αβ0变换,并且独立地在每个从控制器中的ABC坐标帧中建立实时电流循环。由于分布式控制在时间尺寸下解耦,因此低成本控制器区域网络(CAN)总线足以传输慢电压环数据。在实验室M3C原型上验证了所提出的分布式控制结构的有效性。

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