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Passivity-based control scheme for doubly-fed induction generator under unbalanced grid voltage

机译:电网电压不平衡的双馈感应发电机基于无源的控制方案

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Based on the mathematical model of doubly-fed induction generator (DFIG) under unbalanced grid voltage, the instantaneous active and reactive power represented by stator voltage and stator current were deduced detailed. Four simply kinds of stator and rotor current reference values according to the different control targets were calculated. Then the paper analyzed the DFIG possessed passivity characteristics from the energy point of view. Furthermore, a passivity-based current controller for DFIG under the positive and negative sequence synchronously rotating frames (SRF) was proposed, so the positive and negative currents of stator and rotor could track the current reference values independently. Simulation and experimental results show that the proposed passivity-based control (PBC) scheme could effectively eliminate the 2th pulsations in stator currents, rotor currents, magnetic torque, active and reactive power according to different targets, and could improve the uninterrupted operation of the wind power system under unbalanced grid voltage. Meanwhile the system could track the maximum wind energy faster and more robust.
机译:基于双馈感应发电机(DFIG)在不平衡电网电压下的数学模型,推导了以定子电压和定子电流为代表的瞬时有功功率和无功功率。根据不同的控制目标,计算了四种简单的定子和转子电流参考值。然后从能量的角度分析了DFIG具有的无源特性。此外,提出了一种在正序和负序同步旋转框架(SRF)下用于DFIG的基于无源的电流控制器,因此定子和转子的正负电流可以独立跟踪电流参考值。仿真和实验结果表明,所提出的基于无源控制(PBC)方案可以根据目标,有效消除定子电流,转子电流,磁转矩,有功和无功功率中的第二 脉动,并且可以改善电网电压不平衡情况下风力发电系统的不间断运行。同时,该系统可以更快,更可靠地跟踪最大风能。

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