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Sliding-Mode Control for DFIG Rotor- and Grid-Side Converters Under Unbalanced and Harmonically Distorted Grid Voltage

机译:不平衡且谐波失真的电网电压下DFIG转子和电网侧转换器的滑模控制

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摘要

Regarding doubly fed induction generator (DFIG) operation, unbalanced and harmonically distorted grid voltage conditions have been treated as two separate control problems. This paper reports a solution for the rotor- and grid-side power converters, which allows one to keep the DFIG successfully in operation under both grid voltage conditions. The proposed solution is based on sliding-mode control (SMC). The rotor-side converter is commanded so that the electromagnetic torque and the stator reactive power remain free of fluctuations that arise during grid voltage disturbances. Meanwhile, the grid-side converter ensures both constant DC-link voltage and steady active power output from the overall system. The developed algorithms turn out being robust against parameter variations and of fast dynamic response. In addition, none of the converters need either voltage or current positive and negative sequences extraction. The simulation results presented demonstrate the appropriateness of SMC to face such disturbed scenarios. Finally, the stability proof of both converters’ control algorithms is provided in the appendices.
机译:关于双馈感应发电机(DFIG)的运行,电网电压的不平衡和谐波失真已被视为两个独立的控制问题。本文报告了一种针对转子侧和电网侧功率转换器的解决方案,该解决方案使DFIG在两种电网电压条件下都能成功地保持运行。所提出的解决方案基于滑模控制(SMC)。命令转子侧变流器,以使电磁转矩和定子无功功率保持不受电网电压扰动期间产生的波动的影响。同时,电网侧转换器可确保整个系统恒定的直流母线电压和稳定的有功功率输出。事实证明,开发的算法对于参数变化和快速的动态响应具有鲁棒性。此外,所有转换器都不需要电压或电流正负序列提取。给出的仿真结果证明了SMC应对此类干扰情况的适当性。最后,附录中提供了两个转换器的控制算法的稳定性证明。

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