Decoupled Feed Forward Voltage Oriented Controller For DFIG Under Balanced And Unbalanced Fault Conditions

D. Varma, Y. Obulesh, C. Babu
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引用次数: 3

Abstract

As wind power penetration increases continuously in total Power Generation, the wind turbines are necessary to stay connected to grid even under grid disturbances. An enhanced control strategy for DFIG is proposed in the present paper to meet the latest grid codes set by grid operators. The decoupled current controller implemented in grid voltage oriented reference frame is applied to Grid Side Converter (GSC) to improve the dynamic performance of DFIG. The proposed scheme enhances the Low Voltage ride through capability of Wind farm by providing reactive Power support under adverse grid conditions. The Proposed scheme also counteracts the ripples in DC Link voltage, stator/rotor currents and stator/reactive power to fulfill the grid code commitments in weak grid.Simulation results are presented to verify the feasibility and robustness of the proposed control scheme.
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平衡和不平衡故障条件下DFIG解耦前馈电压定向控制器
随着风电在总发电量中的比重不断增加,风力发电机组在电网扰动下仍需保持并网。本文提出了一种改进的DFIG控制策略,以满足电网运营商制定的最新电网规范。将栅极电压导向参考系中的解耦电流控制器应用于栅极侧变换器,提高了栅极侧变换器的动态性能。该方案通过在电网不利条件下提供无功支持,提高了风电场的低压穿越能力。该方案还抵消了直流链路电压、定子/转子电流和定子/无功功率的波动,以满足弱电网的电网代码承诺。仿真结果验证了所提控制方案的可行性和鲁棒性。
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