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Short Circuit Current Calculation Method of Doubly-Fed Induction Generator with Crowbar Protection Based on Flux Transient Characteristics

机译:基于磁通瞬态特性的带撬杠保护的双馈感应发电机短路电流计算方法

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摘要

With the wide application of doubly-fed induction generator (DFIG), accurate calculation and analysis of the short circuit currents of DFIG with crowbar protection has become very important key to realizing the low voltage ride through (LVRT) capability of DFIG and establishing the corresponding grid protection scheme. In view of this, a method to calculate the short circuit currents of DFIG with crowbar protection when different types of fault occur in the grid is proposed in this paper. First, the DFIG stator and rotor 2nd-order differential equations in the cases of grid symmetrical fault and asymmetrical fault are established respectively. And the short circuit current calculation model when crowbar resistance remains unchanged in the fault duration is obtained. On this basis, the short circuit current calculation model when crowbar resistance varies in the fault duration is derived. And then, the influence of crowbar resistance and DFIG rotor speed on the short circuit current calculation model is analyzed, including the variation pattern of flux eigenvalues with the crowbar resistance, and the variation feature of flux amplitude and phase angle with the rotor speed. Besides, the transient variation characteristics of different flux components are studied. Finally, time-domain simulation tests verify that the proposed calculation method is correct and applicable to different types of crowbar circuits in the market. Besides, the influence of crowbar resistance and DFIG rotor speed on the stator short circuit current peak, peak time and current frequency in different fault cases is revealed.
机译:随着双馈感应发电机(DFIG)的广泛应用,具有撬杠保护功能的DFIG短路电流的准确计算和分析已成为实现DFIG低压穿越(LVRT)能力并建立相应解决方案的关键。电网保护方案。鉴于此,本文提出了一种在电网中发生不同类型故障时利用撬棍保护的双馈双馈短路电流计算方法。首先,分别建立了电网对称故障和非对称故障情况下的DFIG定子和转子二阶微分方程。得到了在故障持续时间内撬棒电阻不变的短路电流计算模型。在此基础上,推导了故障持续时间内撬棒电阻发生变化时的短路电流计算模型。然后,分析了撬棒电阻和DFIG转子转速对短路电流计算模型的影响,包括磁通特征值随撬棒电阻的变化规律,磁通幅度和相角随转子转速的变化特征。此外,研究了不同磁通分量的瞬态变化特性。最后,时域仿真测试验证了所提出的计算方法是正确的,并适用于市场中不同类型的撬棍电路。此外,还揭示了在不同故障情况下,撬棍电阻和DFIG转子速度对定子短路电流峰值,峰值时间和电流频率的影响。

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