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Instability in induction generator based wind farms connected to series compensated transmission lines

机译:连接到串联补偿传输线的基于感应发电机的风电场的不稳定性

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This paper presents a study of subsynchronous mode instability in Induction Generator (IG) based wind farm connected to a series compensated transmission line. The IEEE First SSR benchmark system is modified by replacing the synchronous generator with an aggregated wind farm. A small signal stability analysis is carried out to detect the instability analytically and then results are validated through a detailed electromagnetic transient simulation using PSCAD/EMTDC. Two types of studies are performed for the small signal analysis. First, a linearized state space model is developed for the eigenvalue calculation. Then, a simple equivalent circuit model is developed for the resonant speed analysis. From the equivalent circuit model, two resonant speeds - upper resonant speed (URS) and lower resonant speed (LRS), are obtained. If the post fault speed of the aggregated generator comes close or enters in the band within these two resonant speeds, the induction generator may become unstable. The performance of the aggregated wind farm model is validated with a distributed wind farm model. It is shown that the wind generator may experience SSR if the fault occurs at the terminals of the wind farm even at a realistic level of series compensation.
机译:本文介绍了在与串联补偿传输线连接的基于感应发电机(IG)的风电场中的亚同步模式不稳定性的研究。通过将同步发电机替换为聚合风电场,对IEEE First SSR基准系统进行了修改。进行了小信号稳定性分析,以分析方式检测不稳定性,然后使用PSCAD / EMTDC通过详细的电磁暂态仿真对结果进行验证。针对小信号分析执行两种类型的研究。首先,开发线性化状态空间模型进行特征值计算。然后,开发了用于谐振速度分析的简单等效电路模型。从等效电路模型中,获得两个谐振速度-上谐振速度(URS)和下谐振速度(LRS)。如果聚合发电机的故障后速度接近或进入这两个共振速度内的频带,则感应发电机可能会变得不稳定。聚集的风电场模型的性能已通过分布式风电场模型进行了验证。结果表明,即使在实际的串联补偿水平下,如果故障发生在风电场的终端,风力发电机也可能会遭受SSR的影响。

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