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SSR in Double-Cage Induction Generator-Based Wind Farm Connected to Series-Compensated Transmission Line

机译:基于双笼感应发电机的风电场的SSR连接到串联补偿输电线路

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Series compensation of transmission networks is being increasingly considered for integration of large wind farms to transfer bulk power. This paper presents the potential of subsynchronous resonance in large wind farms based on double-cage induction generators connected to a series-compensated line. A detailed linear state space model is presented for the wind plant and the transmission system. Eigenvalues are determined for a wide range of series compensation levels for various sizes of wind farms as well as a wind farm producing different power outputs. The potential of SSR involving both induction generator effect and torsional interaction is investigated in-depth. Eigenvalue analysis results obtained through Matlab simulations are validated by detailed electromagnetic transient simulation using PSCAD/EMTDC software. Studies are conducted for different commercially available double-cage induction generator-based wind turbines. SSR analysis in a realistic wind farm with identical wind turbine generators subjected to different wind speeds, and different sizes of wind turbine generators subjected to same wind speed are also carried out. It is shown that induction generator effect-based SSR can potentially occur for wind farms even at realistic levels of series compensation.
机译:为了集成大型风电场以传输大功率,越来越多地考虑对传输网络进行串联补偿。本文介绍了基于双笼感应发电机连接到串联补偿线路的大型风电场中次同步谐振的潜力。为风电厂和输电系统提供了详细的线性状态空间模型。特征值是针对各种规模的风力发电场以及产生不同功率输出的风力发电场的一系列串联补偿水平确定的。深入研究了SSR涉及感应发电机效应和扭转相互作用的潜力。通过Matlab仿真获得的特征值分析结果已通过使用PSCAD / EMTDC软件进行的详细电磁瞬态仿真进行了验证。针对市售的基于双笼感应发电机的不同风力涡轮机进行了研究。在现实的风电场中,对具有相同风速发电机的相同风力发电机组和受相同风速风速的不同发电机组进行SSR分析。结果表明,即使在实际的串联补偿水平下,风电场也可能发生基于感应发电机效应的SSR。

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