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Direct power control of doubly fed induction generator without phase-locked loop in synchronous reference frame during frequency variations

机译:频率变化期间同步参考系中无锁相环的双馈感应发电机的直接功率控制

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摘要

This study presents a direct power control strategy for a grid-connected doubly fed induction generator (DFIG) without phase-locked loop (PLL) in a synchronous reference frame. In the proposed control system, a virtual phase angle, produced by a fixed angular speed, is used to replace the actual one of the network voltage for synchronous coordinate transformations, thus, PLL can be eliminated. The steady-state and dynamic behaviours of DFIG active and reactive powers are analysed with the potential grid frequency variations. It is found that the natural components of the flux linkages are the root cause of power and torque pulsations during the transient frequency variations. Thus, an auxiliary demagnetising current control scheme is proposed and designed to damp the natural flux linkages caused by the transient frequency variations. Then, based on the mathematic model, the control system performance is theoretically analysed. Finally, the simulation and experimental results are provided to demonstrate that the developed control system is adaptive to frequency deviations and achieve a decoupling control of both active and reactive powers.
机译:这项研究提出了在同步参考系中不带锁相环(PLL)的并网双馈感应发电机(DFIG)的直接功率控制策略。在所提出的控制系统中,由固定角速度产生的虚拟相角被用来代替用于同步坐标变换的实际网络电压之一,因此可以省去PLL。利用潜在的电网频率变化来分析DFIG有功功率和无功功率的稳态和动态行为。发现在瞬态频率变化期间,磁链的自然成分是功率和转矩脉动的根本原因。因此,提出并设计了一种辅助消磁电流控制方案,以抑制由瞬态频率变化引起的自然磁链。然后,基于数学模型,对控制系统的性能进行了理论分析。最后,提供的仿真和实验结果表明,所开发的控制系统可适应频率偏差并实现有功和无功的去耦控制。

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