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Thermal Cycling Overview of Multi-Megawatt Two-Level Wind Power Converter at Full Grid Code Operation

机译:满电网运行时兆瓦级两级风力发电转换器的热循环概述

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In this paper, two promising multi-megawatt wind turbines equipped with a doubly-fed induction generator-based partial-scale and a permanent magnet synchronous generator-based full-scale two-level power converter are designed and compared. Simulations of the two configurations with respect to loss distribution and junction temperature variation for the power device over the entire wind speed range are presented and analyzed both for normal operation and operation with various specific grid codes. It is concluded that in both partial-scale and full-scale power converters, the most thermal stressed power device in the generator-side converter will have a higher mean junction temperature and also junction temperature variation compared to the grid-side converter at the rated wind speed, and the thermal performance of the generator-side converter in the partial-scale power converter becomes crucial around the synchronous operating point and needs to be considered carefully. Moreover, reactive power injection directed by the grid codes will affect the thermal profile of the power semiconductors, especially at lower wind speeds.
机译:在本文中,设计并比较了两种有前途的兆瓦级风力涡轮机,它们配备了基于双馈感应发电机的部分规模和基于永磁同步发电机的满刻度两级功率转换器。给出了两种配置关于功率器件在整个风速范围内的损耗分布和结温变化的仿真,并针对正常运行和使用各种特定电网规范的运行进行了分析。结论是,与部分额定功率转换器和满量程功率转换器相比,在额定功率下,与发电机侧转换器相比,发电机侧转换器中最受热应力的功率器件将具有更高的平均结温和结温变化。风速以及部分比例功率转换器中发电机侧转换器的热性能在同步工作点附近变得至关重要,因此需要仔细考虑。此外,由电网规范指示的无功功率注入将影响功率半导体的热分布,尤其是在较低风速下。

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