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Enhanced model of the doubly fed induction generator-based wind farm for small-signal stability studies of weak power system

机译:基于双馈感应发电机的风电场的增强模型,用于弱电力系统的小信号稳定性研究

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This study proposes an enhanced model of the doubly fed induction generator (DFIG)-based wind farm (WF) for small-signal stability (SSS) studies of weak power system. This model consists of a wind turbine, a drive train, a simplified generator/converter module and associated controls. As analysed and verified in this study, the dynamics of the phase-lockedloop and the rotor current loop are important for accurate SSS studies of the weak power system involving the DFIG-based WF and thus should be modelled appropriately. The enhanced model is validated by eigenvalue analysis and time-domain simulations. Compared with the detailed model, the WT3 model provided by General electric (GE) energy and the conventional model, the enhanced model presents high precision and satisfactory simplification for SSS studies. As the application of the enhanced model, a case study is carried out to explore the impact of WF ancillary voltage/frequency controls on SSS of the weak grid. As indicated in this study, the WF ancillary controls exert distinct impact on SSS. New lightly damped power oscillations can be introduced. Therefore extra measures should be considered if the ancillary controls are required by the WF in order to satisfy the future grid codes.
机译:这项研究提出了基于双馈感应发电机(DFIG)的风电场(WF)的增强模型,用于弱电力系统的小信号稳定性(SSS)研究。该模型包括风力涡轮机,传动系统,简化的发电机/转换器模块和相关的控件。正如本研究中分析和验证的那样,锁相环和转子电流环的动力学对于涉及基于DFIG的WF的弱电系统的精确SSS研究非常重要,因此应进行适当建模。增强的模型通过特征值分析和时域仿真进行了验证。与详细模型,通用电气(GE)能源提供的WT3模型和常规模型相比,增强模型为SSS研究提供了高精度和令人满意的简化。作为增强模型的应用,进行了案例研究,以探索WF辅助电压/频率控制对弱电网SSS的影响。如本研究所示,白血球辅助控制对SSS有明显的影响。可以引入新的轻微衰减的功率振荡。因此,如果WF要求辅助控制以满足将来的电网规范,则应考虑采取额外措施。

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