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Impact of wind conditions on thermal loading of PMSG wind turbine power converters

机译:风况对PMSG风力发电机功率转换器热负荷的影响

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摘要

Power converter reliability is critical for permanent magnet synchronous generator (PMSG) wind turbines. Converter failures are linked to power module thermal loading but studies often neglect turbine dynamics, control and the impact of wind speed sampling rate on lifetime estimation. This study addresses this using a 2 MW direct-drive PMSG wind turbine model with a two-level converter, and simulating junction temperatures () using a power module thermal equivalent circuit under various synthetic wind speed conditions. These synthetic wind conditions include constant and square wave profiles representing stable and gusty wind conditions. Responses to square wave wind speeds showed that the lower the gust frequency, the higher Δ becomes, demonstrating that low turbulence sites have greater thermal variation in the converter. In contrast, wind speed variations with frequencies >0.25 Hz deliver only small increases in Δ. It is concluded that reasonable approximations of profiles can be made with 0.25 Hz wind speed data, but that lower data rate wind measurements miss essential, damaging characteristics.
机译:功率转换器的可靠性对于永磁同步发电机(PMSG)风力涡轮机至关重要。变流器故障与功率模块的热负荷有关,但研究通常忽略了涡轮动力学,控制以及风速采样率对寿命估算的影响。本研究使用带有两级转换器的2 MW直驱PMSG风力发电机模型以及在各种合成风速条件下使用功率模块热等效电路模拟结温()来解决此问题。这些合成风状况包括代表稳定和阵风状况的恒定和方波轮廓。对方波风速的响应表明,阵风频率越低,Δ越高,这表明低湍流点在转换器中的热变化较大。相反,频率大于0.25 Hz的风速变化只会使Δ的增加很小。结论是,可以使用0.25 Hz的风速数据对轮廓进行合理的近似,但是较低的数据速率风测量则缺少必要的破坏特性。

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