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A METHOD FOR INFERRING CONDITIONAL STOCHASTIC FAILURE RATES FROM THE TIME-HISTORY OF OBSERVED FAILURES

机译:一种从观察失败的时间历史推断出条件随机失败率的方法

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Observed failures, rather than first principles, are used to estimate fatigue rates probabilistically conditioned on operating conditions. The method developed assumes that a normal random variable may be used to approximate the damage limit (remaining lifetime) of components subjected to cumulative damage and that when a component fails, its damage limit has vanished at a rate proportional to the amount of time spent at each operating condition experienced during its lifetime. By considering differences in cumulative damage between pairs of failed components, we obtain the relative rates at which damage is accumulated for each observed operating condition. When the differences in component lifetimes are dominated by variations in experienced conditions, it is possible to estimate absolute rates. Otherwise, variations in initial damage limits dominate and it is only possible to estimate the mean and variance of this distribution. We demonstrate the procedure on synthetic data, including a test for the dominant source of lifetime variations.
机译:观察到的失败,而不是第一个原理,用于估计在操作条件下估算概率概率的疲劳率。所开发的方法假设可以使用正常随机变量来近似经历累积损坏的部件的损伤限制(剩余寿命),并且当组件发生故障时,其损坏限制以与所花费的时间成比例的速率消失每次运行条件都经历了一生。通过考虑对失败组件成对之间的累积损坏的差异,我们获得了对每个观察到的操作条件累积损坏的相对速率。当组分寿命的差异由经验状况的变化主导时,可以估计绝对速率。否则,初始损害限制​​的变化占主导地位,并且只能估计该分布的平均值和方差。我们展示了合成数据的过程,包括测试终身终身变化的主要来源。

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