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Performance Analysis of Unified Doubly-fed Induction Generator for Wind Power Application

机译:风力发电用统一双馈感应发电机的性能分析

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Increasing penetration of the large wind farm in the system has forced the power system policy makers to develop new electricity grid codes which are required for the wind power generator to fulfill the same requirements as conventional power plants. This paper introduces a new solution for doubly fed induction generators (DFIG) to stay connected to the grid during abnormal conditions. The main idea is to provide a series connected grid side converter (SGSC) with conventional DFIG scheme. A new control scheme is then described and analyzed, which allows relatively low-energy ratings in the SGSC, thereby significantly lowering the overall system cost. Analysis is carried out to explore the grid code requirements (GCR) during static and dynamic conditions for the performance of the system along with the controller for abnormal conditions. Reactive power support capability of series converter during steady state condition is also demonstrated. A detailed small-signal analysis carried out which provides the insight of oscillatory behavior of DFIG. Extensive simulation and analytical results have demonstrated the enhanced performances resulting from the application of the control scheme and in compliance with the new grid codes.
机译:大型风电场在系统中的渗透率不断提高,迫使电力系统决策者制定新的电网法规,风力发电机要满足与常规电厂相同的要求,就必须制定新的电网法规。本文介绍了一种双馈感应发电机(DFIG)在异常情况下保持与电网连接的新解决方案。主要思想是提供一种具有常规DFIG方案的串联电网侧转换器(SGSC)。然后描述并分析了一种新的控制方案,该方案允许SGSC中的能量等级相对较低,从而显着降低了总体系统成本。进行分析以探索在静态和动态条件下系统性能的网格代码要求(GCR),以及异常条件下的控制器。还演示了稳态条件下串联转换器的无功支持能力。进行了详细的小信号分析,提供了DFIG振荡行为的见解。大量的仿真和分析结果表明,由于采用了控制方案并符合新的电网规范,因此性能得到了增强。

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