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Multi-DFIG aggregated model based SSR analysis considering wind spatial distribution

机译:考虑风空间分布的基于多DFIG聚集模型的SSR分析

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This study investigates the impact of wind spatial distribution on sub-synchronous resonance (SSR), considering wind speed difference and wind turbine division. For a doubly-fed induction generator (DFIG) wind farm, two equivalent aggregated models, i.e. a one-DFIG model and a multi-DFIG model, are established and both simplified to impedance model for investigation. In one-DFIG model, the SSR mechanism in DFIG wind farm, and the impact of wind speed on SSR are discussed. The concept of damping is introduced to explain how DFIG SSR current changes under the negative resistance of wind farm. Then, in multi-DFIG model, DFIGs are divided into different groups based on their wind speed, and the interaction between DFIG groups is investigated. Simulations are used to validate the proposed analysis, and the results show that, multi-DFIG model performances a higher accuracy when dealing with DFIG wind spatial distribution problems compared with one-DFIG model.
机译:这项研究考虑了风速差和风力发电机组划分,研究了风的空间分布对次同步共振(SSR)的影响。对于双馈感应发电机(DFIG)风电场,建立了两个等效的聚合模型,即单DFIG模型和多DFIG模型,并且都简化为阻抗模型以进行研究。在单DFIG模型中,讨论了DFIG风电场中的SSR机理以及风速对SSR的影响。介绍了阻尼的概念,以解释在风电场的负电阻下双馈双馈SSR电流如何变化。然后,在多DFIG模型中,根据DFIG的风速将其划分为不同的组,并研究DFIG组之间的相互作用。通过仿真验证了所提出的分析结果,结果表明,与单DFIG模型相比,多DFIG模型在处理DFIG风空间分布问题时具有更高的精度。

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