Research on the Low Voltage Fault of Doubly-fed Variable Speed Pumped Storage
ID:146 View Protection:ATTENDEE Updated Time:2022-05-22 00:19:33 Hits:372 Poster Presentation

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Abstract
In a doubly fed induction generator (DFIG)-based pumped storage plant when the grid voltage sags severely, the rotor side converter (RSC) suffers from overvoltage and overcurrent owing to the large electromotive force (EMF). To ensure that the converter operates in a safe area when grid faults occur, this paper proposes a Double impedance-substitution control (DISC) strategy to improve the system’s low-voltage ride through (LVRT) capability. When the grid voltage sag is detected, the grid side converter (GSC) and RSC are connected in parallel to the rotor circuit by changing the topology of the system. In the new topology, GSC and RSC are equivalent to inductive impedance by controlling, which can not only suppress the overvoltage and overcurrent at the rotor side but also effectively reduce the torque ripple. Additionally, the DISC strategy can provide reactive power support to the grid during LVRT. Finally, the simulation results show that the DISC strategy can maintain the current flowing through the RSC within ±1 p.u., and compared with the demagnetization control method (Method-1) and stator current feedback control method (Method-2), the effectiveness of the proposed method was further demonstrated.
Keywords
pumped storage;doubly-fed induction generator machine(DFIGM);LVRT;DISC
Speaker
LiuJiahong
student 哈尔滨理工大学

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    May 27

    2022

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    May 29

    2022

  • Feb 28 2022

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  • May 29 2022

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  • Jun 22 2022

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