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A new model of the double-feed induction generator wind turbine

机译:双馈感应发电机风力发电机的新模型

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The variable speed double-feed induction generator wind turbine (DFIG) is today the most widely used concept, owing to its high performance, its capability to capture the maximum wind energy, and the low cost of the induction machine. These features contribute to the continuous installation of the DFIG power generation in several countries [1]. As a consequence, in the near future, this type of wind turbines may start to influence the behavior of electric power systems by interacting with conventional generation and loads. Therefore, DFIG turbine models that can be integrated into power system simulation software are needed. The DFIG is a standard, wound rotor induction machine with its stator winding connected directly to the grid and its rotor windings connected to the grid trough an ac/dc/ac PWM converter. The ac/dc/ac converter normally consists of a machine-side converter and a grid-side converter, both of which are controlled by decoupled d-q control approaches. The detailed model of the DFIG demands high computational requirement, which increases when a wind farm is considered. The aim of this paper is, therefore, to propose a new simplified model of the DFIG appropriate for bulk power system dynamic studies.
机译:变速双馈感应发电机风力涡轮机(DFIG)由于其高性能,捕获最大风能的能力以及感应电机的低成本而成为当今使用最广泛的概念。这些功能有助于在多个国家/地区持续安装DFIG发电设备[1]。结果,在不久的将来,这种类型的风力涡轮机可能开始通过与常规发电和负荷相互作用来影响电力系统的性能。因此,需要可以集成到电力系统仿真软件中的DFIG涡轮机模型。 DFIG是一种标准的绕线式转子感应电机,其定子绕组直接连接到电网,转子绕组通过交流/直流/交流PWM转换器连接到电网。交流/直流/交流转换器通常由机器侧转换器和电网侧转换器组成,两者均由解耦的d-q控制方法控制。 DFIG的详细模型要求很高的计算要求,而考虑风电场时,这一要求会增加。因此,本文的目的是提出一种适用于大型电力系统动态研究的DFIG简化模型。

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