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Dynamic performance of doubly-fed induction generator stator flux during consecutive grid voltage variations

机译:连续电网电压变化期间双馈感应发电机定子磁通的动态性能

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摘要

For the grid-connected doubly-fed induction generator (DFIG)-based wind turbine, because of the stator connected to the grid directly, the stator flux easily suffers from the effects of grid voltage variations, such as grid disturbances and grid faults. Moreover, since the magnetic field is excited by the rotor current, stator flux is also affected by the rotor current. Therefore this study systematically studies the dynamic performances of stator flux under consecutive grid voltage variations and varying rotor currents, and its influence on the performances of the DFIG during grid faults. The analyses reveal that the stator flux can be accumulated by the consecutive variations of the stator voltage, and the instants of grid voltage variations can lead to different amplitudes of the stator flux. In addition, the conventional vector control strategy and the active damping strategy are compared with the behaviour of the stator flux. Furthermore, the simulation and experiment are carried out to validate the theoretical analyses, and the results have clearly confirmed the correctness and effectiveness of the analyses of the stator flux performances.
机译:对于基于并网双馈感应发电机(DFIG)的风力涡轮机,由于定子直接连接到电网,因此定子磁通容易受到电网电压变化的影响,例如电网干扰和电网故障。而且,由于磁场由转子电流激励,因此定子磁通也受到转子电流的影响。因此,本研究系统地研究了在连续电网电压变化和转子电流变化的情况下定子磁通的动态性能,以及其在电网故障期间对DFIG性能的影响。分析表明,定子磁通可以通过定子电压的连续变化来累积,并且电网电压变化的瞬间可以导致定子磁通的幅度不同。另外,将传统的矢量控制策略和主动阻尼策略与定子磁通的行为进行了比较。此外,通过仿真和实验对理论分析进行了验证,结果清楚地证明了定子磁通性能分析的正确性和有效性。

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