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Development of a 5-kW Scaled Prototype of a 2.5 MW Doubly-Fed Induction Generator

机译:开发2.5兆瓦双馈感应发电机的5千瓦比例原型

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The increasing penetration of wind power in electricity networks necessitates the detailed modeling of wind generators in order to assess their impact on power systems. This is usually done by means of computer simulation. However, the accuracy of the simulation results is limited by the complexity of the simulation models. Greater accuracy can be achieved by assessing the impact of wind generators experimentally using scaled prototypes. In this paper, a 2.5 MW doubly-fed induction generator (DFIG) is scaled down to 5 kW for use in a laboratory-based wind energy system. This is proposed to be used for laboratory-based experimental investigations of network integration issues associated with DFIG-based wind systems. A scaling methodology is formulated with the objective of keeping the dynamic response identical for the two DFIG. Finite-element analysis is used to verify the analytical design, which agrees with the test results.
机译:风力在电力网络中的渗透率越来越高,因此有必要对风力发电机进行详细建模,以评估其对电力系统的影响。这通常是通过计算机模拟来完成的。但是,仿真结果的准确性受到仿真模型复杂性的限制。通过使用比例缩放的原型通过实验评估风力发电机的影响,可以实现更高的精度。在本文中,将2.5 MW双馈感应发电机(DFIG)缩小至5 kW,用于基于实验室的风能系统。建议将其用于与基于DFIG的风力系统相关的网络集成问题的基于实验室的实验研究。制定了一种缩放方法,目的是使两个DFIG的动态响应保持相同。有限元分析用于验证分析设计,该设计与测试结果一致。

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