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Dynamic Behavior of Wind Turbine Generator Configurations during Ferroresonant Conditions

机译:铁谐型条件下风力发电机配置的动态行为

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摘要

In this paper the dynamic behavior of different wind turbine generator configurations including doubly fed induction generators (DFIG), squirrel cage induction generator (SCIG), wound rotor induction generator (WRIG), and permanent magnet synchronous generator (PMSG) under ferroresonant conditions of energization and de-energization was investigated using Simulink/MATLAB (version 2017B, MathWorks, Natick, MA, USA). The result showed that SCIG had the highest overvoltage of 10.1 PU during energization, followed by WRIG and PMSG, while the least was DFIG. During de-energization, PMSG had the highest overvoltage of 9.58 PU while WRIG had the least. Characterization of the ferroresonance was done using a phase plane diagram to identify the harmfulness of the ferroresonance existing in the system. It was observed that for most of the wind turbine configurations, a chaotic mode of ferroresonance exists for both energization and de-energization scenarios. Although overvoltage during energization for wind turbine generator configurations was higher than in the de-energization with an exception of PMSG, their phase plane diagrams showed that de-energization scenarios were more chaotic than energization scenarios. The study showed that WRIG was the least susceptible to ferroresonance while PMSG was the most susceptible to ferroresonance.
机译:在本文中,不同风力涡轮发电机配置的动态行为包括双馈感应发电机(DFIG),鼠笼式感应发电机(SCIG),缠绕转子感应发电机(触发)和永磁同步发电机(PMSG)在Ferrorsonant的通电条件下使用Simulink / Matlab(2017B版,Mathworks,Natick,Ma,USA)调查和断电。结果表明,突发格在通电期间的最高过电压为10.1 PU,然后是触发器和PMSG,而最小的是DFIG。在断电期间,PMSG具有9.58 PU的最高过电压,而触发则具有最小。使用相平面图完成了分解的特征,以识别系统中存在的混合源的危害。观察到,对于大多数风力涡轮机配置,对于通电和脱离通电场景,存在混沌模式。虽然风力涡轮发电机配置期间的过电压高于PMSG的脱敏,但它们的相平面图显示了断电方案比激励情景更加混乱。该研究表明,PMSG最容易受到铁铿ance的影响,触发器最不敏感。

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