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A novel active voltage and frequency regulator to improve grid-disconnection transients of self-excited induction generator system

机译:一种新颖的有源电压和频率调节器,用于改善自激感应发电机系统的电网断开瞬变

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Loss of frequency and voltage regulation will be experienced by a self-excited induction generator system (SEIG) when it is disconnected from the utility grid. The SEIG may be shut down due to this grid-disconnection transient. To avoid the foregoing disadvantage, a novel active voltage and frequency regulator (AVFR) for a wind-turbine driven SEIG was developed in this paper. The control strategy of the AVFR is based on the decoupled d-and q-axis control in a synchronously rotating reference frame. The advantages of this scheme are that it can not only compensate the reactive power while SEIG is working in the grid-connection mode but it is also capable of stabilizing the frequency and voltage in the grid-disconnection mode. A mathematical model for this system is first developed, and then the simulation is performed on MATLAB/SIMULINK platform. The simulated results reveal that the performance of AVFR can be used to maintain output frequency and to mitigate terminal voltage fluctuations for the SEIG.
机译:当自激感应发电机系统(SEIG)与公用电网断开连接时,将会遭受频率和电压调节的损失。由于此电网断开瞬变,可能会关闭SEIG。为了避免上述缺点,本文开发了一种用于风力发电机驱动的SEIG的新型有源电压和频率调节器(AVFR)。 AVFR的控制策略基于在同步旋转参考系中分离的d轴和q轴控制。该方案的优点在于,它不仅可以补偿SEIG在并网模式下工作时的无功功率,而且还能够在并网模式下稳定频率和电压。首先开发该系统的数学模型,然后在MATLAB / SIMULINK平台上执行仿真。仿真结果表明,AVFR的性能可用于维持SEIG的输出频率并减轻端子电压波动。

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