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Study of torque characteristics of DFIG during the voltage sag

机译:DFIG电压暂降过程中转矩特性的研究

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In order to analyze the adapt ability of doubly-fed induction generator (DFIG) happens, and achieve the capability of low voltage ride through of DFIG, it is necessary to study the process of electromagnetic transient when the power grid fault happens. In this paper, using the characteristics equation of DFIG, to establish the state space equation of describing the electromagnetic transient process, and derive the analytic rule in the domain time of the current of stator and rotor dq coordinate system when the voltage drop under varying degrees. Therefore, deriving the relationship between the electromagnetic torque of DFIG during the transition mechanism with rotor excitation voltage characteristics, so to provide adequate theoretical basis for protecting the transmission system. In order to verify the correctness of theoretical analysis, the voltage sag transient model of DFIG of 1.5MW on matlab simulation platform is created. The simulation results show that the waveforms of analyzing the transient voltage drop are basically the same, it means the transient analysis is correct. Through the analysis can help to assess the operation characteristics of voltage sag and the design the control technology.
机译:为了分析双馈感应发电机(DFIG)发生的适应能力,并实现双馈感应发电机的低压穿越能力,有必要研究电网故障发生时的电磁暂态过程。本文利用DFIG的特征方程,建立了描述电磁暂态过程的状态空间方程,并推导了在不同程度的电压降时定子和转子dq坐标系中电流的域时间的解析规则。 。因此,推导DFIG过渡过程中DFIG的电磁转矩与转子励磁电压特性之间的关系,为保护传动系统提供足够的理论依据。为了验证理论分析的正确性,在matlab仿真平台上建立了1.5MW DFIG的电压暂降暂态模型。仿真结果表明,瞬态电压降的分析波形基本相同,表明瞬态分析是正确的。通过分析可以帮助评估电压暂降的工作特性并设计控制技术。

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