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Thermal Behavior Optimization in Multi-MW Wind Power Converter by Reactive Power Circulation

机译:无功功率循环多MW风电变换器的热行为优化

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摘要

The influence of actively controlled reactive power on the thermal behavior of multi-MW wind power converter with a Doubly-Fed Induction Generator (DFIG) is investigated. First, the allowable range of internal reactive power circulation is mapped depending on the DC-link voltage as well as the induction generator and power device capacity. Then, the effects of reactive power circulation on current characteristic and thermal distribution of the two-level back-to-back power converter are analyzed and compared. Finally, the thermal-oriented reactive power control method is introduced to the system for the conditions of constant wind speed and during wind gust. It is concluded that the thermal performance will be improved by injecting proper reactive power circulation within the wind turbine system, thereby being able to reduce the thermal cycling and enhance the reliability of the power converter.
机译:研究了具有双馈感应发生器(DFIG)的多MW风电转换器对多MW风力转换器的热行为的影响。首先,根据DC-Link电压以及感应发电机和功率器件容量,映射内部无功功率循环的允许范围。然后,分析并比较了反应电力循环对二级背对电力转换器的电流特性和热分布的影响。最后,将热导向的无功功率控制方法引入系统中,用于恒定风速和风阵期间的条件。得出结论,通过在风力涡轮机系统内注入适当的无功功率循环,可以提高热性能,从而能够减少热循环并增强功率转换器的可靠性。

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