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Electro-thermal modeling for junction temperature cycling-based lifetime prediction of a press-pack IGBT 3L-NPC-VSC applied to large wind turbines

机译:基于接线温度循环的电热模型的电热型寿命预测施用到大型风力涡轮机的压力机IGBT 3L-NPC-VSC的预测

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Reliability is a critical criterion for multi-MW wind turbines, which are being employed with increasing numbers in wind power plants, since they operate under harsh conditions and have high maintenance cost due to their remote locations. In this study, the wind turbine grid-side converter reliability is investigated regarding IGBT lifetime based on junction temperature cycling for the grid-side press-pack IGBT 3L-NPC-VSC, which is a state-of-the art high reliability solution. In order to acquire IGBT junction temperatures for given wind power profiles and to use them in IGBT lifetime prediction, the converter electro-thermal model including electrical, power loss, and dynamical thermal models is developed with the main focus on the thermal modeling regarding converter topology, switch technology, and physical structure. Moreover, these models are simplified for their practical implementation in computation platforms. Finally, the converter lifetimes for wind power profiles are predicted using the IGBT lifetime model available. Hence, the developed electro-thermal model's suitability for the lifetime predictions is shown.
机译:可靠性是多MW风力涡轮机的关键标准,其在风力发电厂中的越来越多的数量上使用,因为它们在恶劣的条件下运行,并且由于其远程位置具有高的维护成本。在该研究中,基于用于网格侧压力机IGBT 3L-NPC-VSC的结温循环,研究了风力涡轮机电网侧转换器可靠性,这是一种最先进的高可靠性解决方案。为了获得给定风电型材的IGBT结温度并在IGBT寿命预测中使用它们,包括电气,功率损耗和动态热模型的转换器电热模型,主要关注转换器拓扑的热建模,开关技术和物理结构。此外,这些模型被简化为它们在计算平台中的实际实现。最后,使用可用的IGBT寿命模型预测用于风电分析的转换器寿命。因此,示出了开发的电热模型对寿命预测的适用性。

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