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Investigation on performance of Doubly-fed induction generator driven by wind turbine under grid voltage fluctuation

机译:电网电压波动下风力发电机双馈感应发电机的性能研究

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To ensure safe and reliable operation of power system based on wind energy, usually plant operators should satisfy grid code requirements such as grid stability, fault ride through (FRT), power quality improvement, grid synchronization and power control etc. To satisfy the grid code requirements of wind turbine, usually grid side converter is playing a major role. So in order to improve the operation capacity of wind turbine under critical situation, the intensive study of both machine side converter control and grid side converter control is necessary. This paper presents the performance analysis of Doubly-fed induction generator (DFIG) under grid voltage fluctuation. The machine uses two back-to-back converters. The grid side converter is modeled to control the active and reactive power independently along with dc-link voltage. The machine side converter is modeled to control the reactive power and maintain the power factor unity irrespective of the transient behavior of the grid.
机译:为了确保基于风能的电力系统的安全可靠运行,通常,工厂运营商应满足电网规范要求,例如电网稳定性,故障穿越(FRT),电能质量改善,电网同步和功率控制等。风力涡轮机的要求,通常是电网侧变流器起主要作用。因此,为了提高风机在危急情况下的运行能力,有必要对机器侧变流器控制和电网侧变流器控制进行深入研究。本文介绍了双馈感应发电机(DFIG)在电网电压波动下的性能分析。机器使用两个背对背转换器。电网侧转换器经过建模,可以独立控制有功功率和无功功率以及直流链路电压。机器侧变流器的建模可控制无功功率并保持功率因数统一,而与电网的瞬态行为无关。

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