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An advanced small-signal model of multi-terminal MMC-HVDC for power systems stability analysis based on dynamic phasors

机译:基于动态相量的电力系统稳定性分析的多端MMC-HVDC高级小信号模型

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This paper proposes an advanced small-signal of multi-terminal MMC-HVDC for large-scale systems stability analysis based on dynamic phasors and state-space, and this advanced model. In accordance with active and passive network control strategies for multi-terminal MMC-HVDC, the matchable small-signal stability models contained higher harmonics are conducted, and related theoretical derivation is carried out. The comparison of the advanced small-signal model, electromagnetic-transient model, and traditional small-signal state-space model is performed under a typical multi-terminal MMC-HVDC network with offshore wind generation. According to simulation, the advanced small-signal model can successfully follow the electromechanical transient response with small errors and predict the damped oscillations. Consequently, the validity and applicability of the proposed model are well confirmed.
机译:提出了一种基于动态相量和状态空间的先进的多端子MMC-HVDC小信号用于大规模系统稳定性分析,并提出了一种先进的模型。根据多端MMC-HVDC的有源和无源网络控制策略,建立了包含高次谐波的可匹配的小信号稳定模型,并进行了相关的理论推导。在具有海上风力发电的典型多端子MMC-HVDC网络下,对先进的小信号模型,电磁瞬态模型和传统的小信号状态空间模型进行了比较。根据仿真,先进的小信号模型可以成功地跟随机电瞬态响应,且误差很小,并可以预测阻尼振荡。因此,该模型的有效性和适用性得到了很好的证实。

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