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Short circuit current analysis of DFIG with crowbar under unsymmetrical grid fault

机译:不对称电网故障下带撬棒的双馈整流器的短路电流分析

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In this paper, the fault characteristic and its formation mechanism of double-fed induction generator (DFIG) are studied, from the point of view of power system relay protection. A new method of analyzing and calculating fault current of DFIG is presented, which combines the advantages of physical process analysis and frequency domain analysis. According to the physical process analysis, the frequency domain equation of DFIG is divided into several equations about zero state and zero input response. By separately solving the several equations, formulas for calculation of the fault current are deduced. These formulas are not only applicable to calculation of short circuit current under symmetrical fault but also unsymmetrical fault. Based on this method, the fault current characteristics of DFIG under symmetrical and unsymmetrical fault are compared. Comparison result shows that AC component of fault current of DFIG under symmetrical fault soon decays end. But AC component under unsymmetrical fault is stable at the end. These new characteristics have an effect on the applicability of the traditional relay protection, and provide a theoretical basis for new methods of relay protection. At the end, simulation results show validity of the proposed formulas under symmetrical and unsymmetrical fault.
机译:从电力系统继电保护的角度,研究了双馈感应发电机(DFIG)的故障特性及其形成机理。结合物理过程分析和频域分析的优点,提出了一种新的DFIG故障电流分析计算方法。根据物理过程分析,DFIG的频域方程分为关于零状态和零输入响应的几个方程。通过分别求解几个方程,推导了故障电流的计算公式。这些公式不仅适用于对称故障下的短路电流计算,而且还适用于非对称故障下的短路电流计算。基于此方法,比较了双馈双馈发电机在对称故障和非对称故障下的故障电流特性。比较结果表明,对称故障下DFIG故障电流的交流分量很快衰减结束。但是,非对称故障下的交流分量最终是稳定的。这些新特性影响了传统继电保护的适用性,为继电保护的新方法提供了理论基础。最后,仿真结果表明了所提公式在对称和非对称故障下的有效性。

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