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Reciprocal and Self-Aging Effects of Power Components on Reliability of DC–DC Boost Converter With Coupled and Decoupled Thermal Structures

机译:功率分量对DC-DC升压转换器可靠性,耦合和解耦热结构的互惠和自变老化

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摘要

Reliable and unceasing exploitation of power electronic converters plays a major part in numerous applications. The aging effects on the performance of a dc-dc boost power converter with different thermal structures are under consideration in this study. This article demonstrates the feasibility of using sensitivity analysis for a much more accurate estimation of the power converters' performances. This article deals with a dc-dc boost converter as a case study in two thermal structures (coupled and decoupled) for electric vehicle application. Significant self and reciprocal effects of components can immensely affect the reliability assessment in thermal coupled structures. It reveals that the useful lifetime of the insulated-gate bipolar transistor (IGBT) and the diode can decrease by 35 and 44, respectively. In thermal decoupled structures, there are no significant reciprocal effects either in electrical or thermal operating points (EOP/TOP). The results reveal the importance of reciprocal aging and self-aging effects on the reliability assessment in coupled thermal structures.
机译:电力电子转换器的可靠和不断的开发能力在许多应用中发挥着重要部分。在本研究中,正在考虑对具有不同热结构的DC-DC升压功率转换器性能的老化效应。本文展示了使用灵敏度分析的可行性,以便更准确地估计功率转换器的性能。本文涉及DC-DC Boost转换器作为用于电动车辆应用的两个热结构(耦合和解耦)的案例研究。组件的显着自我和互易效应可以非常影响热耦合结构中的可靠性评估。它揭示了绝缘栅双极晶体管(IGBT)的有用寿命和二极管分别可以分别降低35和44。在热解耦结构中,在电气或热操作点(EOP / TOP)中没有显着的互易效应。结果揭示了互惠衰老和自变老化对耦合热结构的可靠性评估的重要性。

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