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Thermal profile analysis of Doubly-Fed induction generator based wind power converter with air and liquid cooling methods

机译:具有空气和液体冷却方法的双馈感应发电机的热谱分析

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摘要

Today, wind power generation system keeps on moving from onshore to offshore and also upscaling in size. As the lifetime of the wind power converter is prolonged to 20–25 years, this paper will investigate and compare different cooling methods for power modules — the air cooling and the liquid cooling seen from a thermal profile assessment point of view. Firstly, an analytical approach from loss profile to thermal profile for the power semiconductor is proposed and verified in a 2 MW Doubly-Fed Induction Generator (DFIG) based wind turbine system. Then, the typical air cooling and liquid cooling in wind power converter are analyzed and compared in terms of the mean junction temperature and the junction temperature fluctuation. It is concluded that the liquid cooling approach has a similar junction temperature fluctuation but gives a lower mean junction temperature than the air cooling approach.
机译:如今,风力发电系统继续从陆上移动到海上,并且大小上升。由于风电转换器的寿命延长至20-25岁,本文将研究和比较电力模块的不同冷却方法 - 从热调评估的视野中的空气冷却和液体冷却。首先,提出了一种从损耗轮廓到功率半导体的热分布的分析方法,并在基于2MW的次馈电机(DFIG)的风力涡轮机系统中验证。然后,在平均结温和结温波动方面分析并比较风力转换器中的典型空气冷却和液体冷却。得出结论,液体冷却方法具有类似的结温波动,但略高于空气冷却方法。

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