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Modern control strategies of doubly-fed induction generator based wind turbine system

机译:基于双馈感应发电机的风力发电系统现代控制策略

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摘要

A doubly-fed induction generator (DFIG) based configuration is still preferred by wind turbine manufactures due to the cost-effective power converter and independent control of the active power and reactive power. To cope with stricter grid codes (e.g. reactive power compensation, low voltage ride-through operation, as well as steady and safe operation during long-term distorted grid), control strategies are continuously evolving. This paper starts with a control strategy using the combined reactive power compensation from both the back-to-back power converters for their optimized lifetime distribution under normal grid conditions. Afterwards, an advanced demagnetizing control is proposed to keep the minimum thermal stress of the rotor-side converter in the case of the short-term grid fault. A modularized control strategy of the DFIG system under unbalanced and distorted grid voltage is discussed, with the control targets of the smooth active and reactive power or the balances and sinusoidal current of the rotor-side converter and the grid-side converter. Finally, a bandwidth based repetitive controller is evaluated to improve the DFIG system's robustness against grid frequency deviation.
机译:双馈感应发电机(DFIG)基于配置仍然由风力涡轮机优选制成品由于成本效益的功率转换器和所述有功功率和无功功率的独立控制。向(长期扭曲网格过程中,例如无功功率补偿,低电压穿越操作,以及稳定和安全的操作)应付严格的网格码,控制策略不断发展。本文使用所述组合的无功功率补偿从背面到后端功率转换器都为正常电网条件下的优化的寿命分布的控制策略开始。此后,一种先进的消磁控制,提出了保持转子侧转换器的最小热应力在短期电网故障的情况下。下不平衡和扭曲的电网电压的DFIG系统的模块化控制策略的讨论,与光滑有功和无功功率的控制目标或余额和转子侧转换器的正弦电流和电网侧转换器。最后,基于带宽重复控制器进行评估,以提高系统DFIG的对抗电网频率偏差的鲁棒性。

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