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Fuse Modeling for Reliability Study of Power Electronic Circuits

机译:电力电子电路可靠性研究的熔丝建模

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摘要

This paper describes a comprehensive modeling approach on reliability of fuses used in power electronic circuits. When fuses are subjected to current pulses, cyclic temperature stress is introduced to the fuse element and will wear out the component. Furthermore, the fuse may be used in a large variation of ambient temperature, e.g. in deserts and the accumulated damage in the fuse elements is gradually increasing due to thermo-mechanical stress that results in resistance increase and further unexpected failures. Consequently, the electrical characteristics of the fuse like I2t, breaking capacity, and rated voltage/current are opposed to shift in time to effect early breaking during the normal operation of the circuit. Therefore, in such cases, a reliable protection required for the other circuit components will not be achieved. The thermo-mechanical models, fatigue analysis and thermo-electrical models of fuses are presented by FEM simulations in order to identify the important factors affecting the performance of fuses at different ambient temperatures and cycling operation.
机译:本文介绍了一种用于电力电子电路中保险丝可靠性的综合建模方法。当保险丝受到电流脉冲时,周期性的温度应力会被引入到保险丝元件中,从而使组件磨损。此外,该保险丝可以在很大的环境温度变化下使用,例如在室温下。在沙漠中,由于热机械应力而导致保险丝元件中累积的损坏逐渐增加,从而导致电阻增加和进一步的意外故障。因此,保险丝的电气特性(如I2t),分断容量和额定电压/电流与时间的变化相反,从而在电路正常工作期间会导致过早的分断。因此,在这种情况下,将无法获得其他电路组件所需的可靠保护。通过有限元模拟,给出了熔断器的热力学模型,疲劳分析和热电模型,以识别影响熔断器在不同环境温度和循环运行条件下性能的重要因素。

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