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A Fault Tolerant Doubly Fed Induction Generator Wind Turbine Using a Parallel Grid Side Rectifier and Series Grid Side Converter

机译:使用并联电网侧整流器和串联电网侧变流器的容错双馈感应发电机风力发电机

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With steadily increasing wind turbine penetration, regulatory standards for grid interconnection have evolved to require that wind generation systems ride-through disturbances such as faults and support the grid during such events. Conventional modifications to the doubly fed induction generation (DFIG) architecture for providing ride-through result in compromised control of the turbine shaft and grid current during fault events. A DFIG architecture in which the grid side converter is connected in series as opposed to parallel with the grid connection has shown improved low voltage ride through but poor power processing capabilities. In this paper, a unified DFIG wind turbine architecture which employs a parallel grid side rectifier and series grid side converter is presented. The combination of these two converters enables unencumbered power processing and robust voltage disturbance ride through. A dynamic model and control structure for this architecture is developed. The operation of the system is illustrated using computer simulations.
机译:随着风力涡轮机渗透率的稳步提高,电网互联的监管标准已经发展到要求风力发电系统穿越诸如故障之类的干扰并在此类事件期间支持电网。用于提供穿越的双馈感应发电(DFIG)体系结构的常规修改导致故障事件期间对涡轮轴和电网电流的控制受到损害。与电网连接并联相比,电网侧转换器串联连接的DFIG架构显示出改善的低压穿越性能,但功率处理能力较差。本文提出了一种采用并联电网侧整流器和串联电网侧变流器的统一DFIG风力发电机架构。这两个转换器的组合可实现无阻碍的功率处理和强大的电压干扰穿越能力。开发了用于该架构的动态模型和控制结构。使用计算机仿真来说明系统的操作。

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