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Decoupled Current Model and Control of Modular Multilevel Converters

机译:模块化多电平转换器的解耦电流模型和控制

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Modular multilevel converters offer several benefits, such as high scalability and power quality, which are particularly advantageous for high-voltage dc transmission systems. However, the control of such converters is very challenging due to the number of control objectives to be achieved simultaneously. The input and output currents must be controlled at their own references, and these references must be properly generated in order to keep the average capacitor voltage constant. The circulating current can be controlled either to minimize losses or to reduce capacitor voltage ripple. Additionally, the capacitor voltage must be kept balanced among cells during the converter operation. In this paper, a model with four independent dynamical components of the arm currents, which also considers the effect of ac and dc systems, is proposed. The proposed model facilitates the dynamical analysis of currents and simplifies the design and implementation of current controllers. Analysis of the proposed current model and experimental results, which confirm the performance of the designed controllers, is shown.
机译:模块化多电平转换器具有多种优势,例如高可扩展性和电能质量,这对于高压直流传输系统特别有利。但是,由于要同时实现许多控制目标,因此这种转换器的控制非常具有挑战性。输入和输出电流必须以它们自己的基准进行控制,并且必须适当生成这些基准,以保持平均电容器电压恒定。可以控制循环电流以最小化损耗或降低电容器电压纹波。另外,在转换器运行期间,电容器电压必须在各单元之间保持平衡。本文提出了一个具有四个独立的臂电流动态分量的模型,该模型还考虑了交流和直流系统的影响。该模型有助于电流的动态分析,并简化了电流控制器的设计和实现。显示了对提出的当前模型和实验结果的分析,这些分析证实了所设计控制器的性能。

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