首页> 外文会议>Integrated Power Electronics Systems (CIPS), Proceedings 2012 7th International Conference on >Thermal Networks for Time-Variant Cooling Systems: Modeling Approach and Accuracy Requirements for Lifetime Prediction
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Thermal Networks for Time-Variant Cooling Systems: Modeling Approach and Accuracy Requirements for Lifetime Prediction

机译:随时间变化的冷却系统的热网络:寿命预测的建模方法和精度要求

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Boundary-condition dependent thermal network models are attractive because of their easy fitting and low computational expense. In the present work, a modeling approach for time-variant cooling systems is presented, switching between such networks fitted to different boundary conditions. The accuracy of the approach, both in terms of temperature histories and predicted IGBT lifetime, is investigated for Foster and Cauer networks, and is compared to errors in the thermal-interface-material resistance. In the case of boundary-condition changes, Cauer networks behave in a physically meaningful way, while Foster networks react too fast. The errors in predicted lifetime based on Foster networks are, for sufficient network length (N = 5), however, in the same range as an error of only 15 % in the thermal resistance of the interface material. As the latter error is difficult to avoid, even Foster networks can be candidates if 'engineering' accuracy levels are required. Cauer networks are recommended if increased accuracy is required. On account of difficult-to-avoid inaccuracies such as that from the thermal interface material, the accuracy provided by the present modeling approach using network switching is found to be sufficient.
机译:依赖边界条件的热网络模型具有吸引力,因为它们易于拟合且计算成本低。在目前的工作中,提出了一种时变冷却系统的建模方法,在适合不同边界条件的此类网络之间进行切换。针对Foster和Cauer网络,研究了温度历史和IGBT寿命的预测方法的准确性,并将其与热界面材料电阻误差进行了比较。在边界条件发生变化的情况下,Cauer网络的行为在物理上有意义,而Foster网络的反应速度太快。对于足够的网络长度(N = 5),基于Foster网络的预测寿命中的误差与界面材料的热阻误差仅在15%的范围内。由于后一种错误很难避免,如果需要“工程”精度水平,那么即使是Foster网络也可以作为候选对象。如果需要提高准确性,建议使用Cauer网络。由于诸如热界面材料之类的难以避免的不准确性,因此发现由使用网络交换的本建模方法所提供的准确性是足够的。

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