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Combination of two variables in a junction temperature control system to elongate the expected lifetime of IGBT-power-modules

机译:结温控制系统中两个变量的组合可延长IGBT电源模块的预期寿命

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In power electronic applications the expected lifetime is an important issue. This paper focuses on the elongation of the expected lifetime of IGBT-power-modules. Temperature swings caused by alternating operation conditions are the major influencing factor. The temperature swings can be reduced by increasing the power losses in low load conditions. This is realized by a model based junction temperature control system. Possible correcting variables are the variation of the switching frequency and the presetting of a current amplitude. Each correcting variable has its benefits and drawbacks. This paper presents a model based junction temperature control system which combines these two correcting variables in a beneficial manner. The functionality is demonstrated on a three phase two level inverter equipped with opened and blackened IGBT power modules feeding a PMSM The correcting variables have no negative influence on the demanded output power of the PMSM.
机译:在电力电子应用中,预期寿命是一个重要的问题。本文着重于延长IGBT电源模块的预期寿命。交替工作条件引起的温度波动是主要影响因素。在低负载条件下,可以通过增加功率损耗来减小温度波动。这是通过基于模型的结温控制系统来实现的。可能的校正变量是开关频率的变化和电流幅度的预设。每个校正变量都有其优点和缺点。本文提出了一种基于模型的结温控制系统,该系统以有益的方式结合了这两个校正变量。该功能在三相两电平逆变器上进行了演示,该逆变器配有为PMSM供电的开黑的IGBT电源模块。校正变量对PMSM的要求输出功率没有负面影响。

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