首页> 外文会议>Power Electronics for Distributed Generation Systems (PEDG), 2012 3rd IEEE International Symposium on >New chaotic phenomena occurring during voltage sags in small wind turbine systems based on back-to-back converters
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New chaotic phenomena occurring during voltage sags in small wind turbine systems based on back-to-back converters

机译:基于背靠背转换器的小型风力发电机系统中的电压暂降过程中会出现新的混沌现象

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This paper deals with a small wind turbine system (WTS) constituted by a permanent magnet synchronous generator (PMSG) connected to the grid via a back-to-back converter. The Low Voltage Ride through (LVRT) requirements for the WTS are described and the nonlinear dynamics of a grid-side converter is analyzed in the presence of voltage sags. The study shows that new chaotic phenomena are generated when the size of the dc-link capacitor is reduced. The reported time waveforms and state-space attractors clearly highlight that the system becomes chaotic during the voltage sag, being stable before and after the occurrence of the disturbance. Finally, the chaotic behavior is validated via the 0–1 test for chaos, thus confirming the novel phenomenon described herein.
机译:本文研究由小型永磁同步发电机(PMSG)构成的小型风力涡轮机系统(WTS),该永磁同步发电机通过背靠背转换器连接到电网。描述了WTS的低电压穿越(LVRT)要求,并在存在电压突降的情况下分析了电网侧转换器的非线性动力学。研究表明,减小直流母线电容器的尺寸会产生新的混沌现象。报告的时间波形和状态空间吸引子清楚地表明,该系统在电压骤降期间变得混乱,在发生干扰之前和之后都保持稳定。最后,通过0-1混沌测试验证了混沌行为,从而证实了本文所述的新颖现象。

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