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Analysis and design of enhanced real and reactive power control schemes for grid connected Doubly Fed Induction Generator

机译:并网双馈感应发电机有功无功控制方案的分析与设计

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Rapid reactive power control for Doubly Fed Induction Generator (DFIG) is necessary for stable operation during voltage control and grid fault conditions. This paper examines the performance of DFIG under three cases viz., i) generator speed, ii) reactive power demand from grid and iii) wind speed. Based on the above disturbances, the system performance is analyzed by considering the parameters like rotor speed, generator torque, stator and rotor voltages and powers. It is also aims to explain DFIG as a vital dynamic reactive power source without the use of any additional external reactive power devices. The simulation results illustrate the efficacy and robustness of torque, speed and stator reactive power control for DFIG system by the proposed methodology. The torque surges are minimum even there is sudden change in wind speed, torque ripples and speed surges are not there when there is sudden change in wind speed.
机译:双馈感应发电机(DFIG)的快速无功功率控制对于在电压控制和电网故障条件期间稳定运行是必不可少的。本文研究了DFIG在以下三种情况下的性能,即i)发电机速度,ii)电网无功功率需求和iii)风速。基于上述干扰,通过考虑转子速度,发电机转矩,定子和转子电压及功率等参数来分析系统性能。它还旨在将DFIG解释为一种重要的动态无功功率源,而无需使用任何其他外部无功功率设备。仿真结果说明了所提出方法对DFIG系统的转矩,速度和定子无功功率控制的有效性和鲁棒性。即使风速突然变化,转矩波动也是最小的,当风速突然变化时,转矩波动和速度波动就不会出现。

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