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Modeling and Control on Grid-connected Inverter Stage of Two-stage Matrix Converter for Direct-drive Wind Power System

机译:直驱风电系统两级矩阵变频器网格连接逆变阶段的建模与控制

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摘要

Applying two-stage matrix converter (TSMC) to direct-drive wind power has advantages compared to traditional AC-DC-AC converters. The valid control on grid-connected inverter stage of TSMC is the key to achieve independent control on active and reactive power of generation system. However, mathematic model of inverter stage of TSMC in synchronous coordinates is a double-input and double-output coupling structure. This coupling structure is difficult to achieve accurately decoupling control on active and reactive current. By using complex vector modeling, the model of grid-connected inverter stage of TSMC is transformed into single-input and single-output vector structure. And a feed-forward complex PI compensator is figured out to achieve completely decoupling control on active and reactive current. Finally, comparative study is to ensure the validity and feasibility of the proposal control strategy by comparing to conventional PI control.
机译:与传统的AC-DC-AC转换器相比,将两级矩阵转换器(TSMC)应用于直接驱动风电。 TSMC网格连接逆变器阶段的有效控制是实现生成系统主动和无功功率独立控制的关键。然而,TSMC在同步坐标中的逆变器阶段的数学模型是双输入和双输出耦合结构。该耦合结构难以实现对主动和无功电流的精确解耦控制。通过使用复杂的矢量建模,将TSMC的网格连接逆变器级模型变为单输入和单输出矢量结构。向前馈电复合PI补偿器进行了图解,以实现对主动和无功电流的完全去耦控制。最后,比较研究是通过与传统PI控制进行比较,确保提案控制策略的有效性和可行性。

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