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Control of Wind Energy Conversion Systems Based on the Modular Multilevel Matrix Converter

机译:基于模块化多级矩阵变换器的风能转换系统控制

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摘要

The nominal power of single wind energy conversion systems (WECS) has been steadily increasing, now reaching power ratings close to 10 MW. In the power conversion stage, medium-voltage power converters are replacing the conventional low-voltage back-to-back topology. Modular multilevel converters have appeared as a promising solution for multi-MW WECSs, due to their modularity and the capability to reach high nominal voltages. This paper discusses the application of the modular multilevel matrix converter to drive multi-MW WECSs. The modeling and control systems required for this application are extensively analyzed and discussed in this paper. The proposed control strategies enable decoupled operation of the converter, provide maximum power point tracking capability at the generator side, grid code compliance at the grid side (including low-voltage ride-through control) and good steady state and dynamic performance for balancing the capacitor voltages in all the clusters. Finally, the effectiveness of the proposed control strategy is validated using simulation and through experimental results obtained with a 27-power-cell prototype.
机译:单风能转换系统(WECS)的标称功率一直在稳步提高,目前达到接近10 MW的额定功率。在功率转换阶段,中压功率转换器正在取代传统的低压背靠背拓扑。模块化多电平转换器由于其模块化和达到高标称电压的能力而已成为多兆瓦WECS的有前途的解决方案。本文讨论了模块化多级矩阵转换器在驱动多兆瓦WECS中的应用。本文广泛分析和讨论了此应用所需的建模和控制系统。所提出的控制策略可实现转换器的解耦操作,在发电机侧提供最大功率点跟踪能力,在电网侧提供符合电网规范的要求(包括低压穿越控制),并具有良好的稳态和动态性能以平衡电容器所有群集中的电压。最后,通过仿真以及通过27个动力单元原型获得的实验结果验证了所提出控制策略的有效性。

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