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Small-Signal Stability Analysis and Current Control Reference Optimization Algorithm of DFIG-Based WT During Asymmetric Grid Faults

机译:非对称电网故障置换基于DFIG的WT的小信号稳定性分析与电流控制参考优化算法

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摘要

The stability issues of weak grid-connected doubly fed induction generator (DFIG) based wind turbines during asymmetric grid faults become very acute. In this article, a small-signal state-space model was established to deal with the stability problems of the DFIG system during asymmetric grid faults. Based on the model, the interaction mechanism between the power grid and the DFIG system during asymmetric faults is described and the modal analysis is performed. The analysis results show that the dominant unstable poles of the system are mainly affected by the phase-locked loop (PLL). Then, according to the vector relationships of voltages and currents, the effect of positive-sequence (PS) and negative-sequence (NS) d-axis currents on the PLL output angle is analyzed. It is pointed out that the system stability can be effectively improved by injecting reasonable d-axis components of PS and NS currents into the power grid during faults. Furthermore, considering the current capacity limitation of DFIG, a novel PS and NS current control reference optimization algorithm is proposed, which can suppress the oscillation of the system. Finally, the correctness of the theoretical analysis and the effectiveness of the proposed control strategy are validated by the simulation and experiments.
机译:在不对称电网故障期间基于弱网格连接的双馈电涡轮机(DFIG)的风力涡轮机的稳定性问题变得非常敏锐。在本文中,建立了一个小信号状态空间模型,以处理非对称网格故障期间DFIG系统的稳定性问题。基于该模型,描述了电网和DFIG系统之间的交互机制描述了不对称故障期间,并进行模态分析。分析结果表明,系统的主导不稳定极点主要受锁相环(PLL)的影响。然后,根据电压和电流的矢量关系,分析了正序列(PS)和负序列(NS)D轴电流对PLL输出角的影响。指出,通过在故障期间将PS和NS电流的合理的D轴分量注入PS和NS电流的合理的D轴分量来有效地改善系统稳定性。此外,考虑到DFIG的电流容量限制,提出了一种新颖的PS和NS电流控制参考优化算法,其可以抑制系统的振荡。最后,通过模拟和实验验证了理论分析的正确性和所提出的控制策略的有效性。

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