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SSR analysis of DFIG based wind farm considering spatial distribution of wind speed

机译:考虑风速空间分布的基于DFIG的风电场的SSR分析

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This paper investigates sub-synchronous resonance (SSR) phenomena inside a doubly-fed induction generator (DFIG) based wind farm, considering the impact of the spatial distribution of wind speed. Firstly, the impedance model of a one-DFIG aggregated model based wind farm is presented to analyze the induction generator effect. Then, a two-DFIGs aggregated impedance model, considering DFIGs in both low wind speed and high wind speed is developed to analyze the influence of wind speed spatially distribution on SSR in a wind farm. The number of DFIGs under different wind speeds, which represented to the wind speed spatially distribution, will influence the SSR. When there are more DFIGs in low wind speed, SSR will occur simultaneously in all DFIGs in a wind farm; while there are more DFIGs in high wind speed, SSR will be damped for all DFIGs. Analysis based on the impendence models and the simulation tests are given.
机译:本文考虑了风速空间分布的影响,研究了基于双馈感应发电机(DFIG)的风电场内部的亚同步共振(SSR)现象。首先,提出了一种基于单双馈风力发电的聚合模型的风场阻抗模型,以分析感应发电机的作用。然后,建立了同时考虑低风速和高风速的DFIG的双DFIG聚合阻抗模型,以分析风速空间分布对风电场中SSR的影响。不同风速下DFIG的数量(代表风速在空间上的分布)将影响SSR。当低风速下有更多的DFIG时,风电场中的所有DFIG中都会同时发生SSR。在高风速下有更多的DFIG时,所有DFIG的SSR都会被衰减。给出了基于阻抗模型的分析和仿真试验。

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