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Reliability determination of aluminium electrolytic capacitors by the mean of various methods. Application to the protection system of the LHC

机译:通过各种方法确定铝电解电容器的可靠性。在大型强子对撞机保护系统中的应用

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The lifetime of power electronic components is often calculated from reliability reports, but this method can be discussed. We compare in this article the results of various reliability reports to an accelerated ageing test of component and introduced the load-strength concept. Large aluminium electrolytic capacitors are taken here in example in the context of the protection system of LHC (Large Hadron Collider) in CERN where the level of reliability is essential. We notice important differences of MTBF (Mean Time Between Failure) according to the reliability report used. Accelerating ageing tests carried out prove that a Weibull law is more adapted to determinate failure rates of components. The load-strength concept associated with accelerated ageing tests can be a solution to determine the lifetime of power electronic components.
机译:电力电子组件的寿命通常根据可靠性报告计算得出,但是可以讨论这种方法。我们在本文中将各种可靠性报告的结果与组件的加速老化测试进行了比较,并介绍了负载强度概念。在此,以CERN的LHC(大型强子对撞机)保护系统为例,此处以大型铝电解电容器为例,在这种系统中,可靠性水平至关重要。根据所使用的可靠性报告,我们注意到MTBF(平均无故障时间)之间的重要差异。进行的加速老化测试证明,威布尔定律更适用于确定组件的故障率。与加速老化测试相关的负载强度概念可以作为确定电力电子组件寿命的解决方案。

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