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Acceleration Factor Constant Principle and the Application under ADT

机译:加速度因数常数原理及其在ADT下的应用

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Accelerated degradation test (ADT) has become an efficient approach to evaluate the reliability for highly reliable products. However, when modeling accelerated degradation data with degradation models, it is difficult to exactly figure out the changing rules of parameters with stress variables varying. At present, the changing rules are mainly assumed according to engineering experience or subjective judgements, which probably results in inaccurately extrapolating the reliability. To figure out the changing rules of parameters with stress variables varying, the acceleration factor constant principle and its application under ADT are studied in the paper. It is well known that the acceleration factor between any two different stress levels should be a constant under an effective ADT. For each degradation model, its parameters should obey special changing rules to satisfy that the acceleration factor maintains a constant throughout an ADT. Taking three extensively used stochastic process models as examples, including Wiener process model, gamma process model, and inverse Gaussian process model, the method of deducing the changing rules of the parameters according to the acceleration factor constant principle was demonstrated. A simulation test was conducted to validate the deduced changing rules of the parameters for the three stochastic process models. An illustrative example involving self-regulating heating cables was used to illustrate the application of the acceleration factor constant principle under ADT. Results indicate that the acceleration factor constant principle offers an appealing and credible approach to help model accelerated degradation data. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:加速降解测试(ADT)已成为评估高度可靠产品可靠性的有效方法。但是,当使用退化模型对加速退化数据建模时,很难准确地找出应力变量变化的参数变化规律。目前,变更规则主要是根据工程经验或主观判断来假设的,这可能会导致可靠性推算不准确。为了找出应力变量变化时参数的变化规律,研究了加速度系数常数原理及其在ADT下的应用。众所周知,在有效的ADT下,任何两个不同应力水平之间的加速度因子应为常数。对于每个降级模型,其参数应遵循特殊的更改规则,以使加速度因子在整个ADT中保持恒定。以维纳过程模型,伽马过程模型和高斯逆过程模型这三种广泛使用的随机过程模型为例,论证了根据加速因子常数原理推导参数变化规律的方法。进行了仿真测试,以验证推导的三个随机过程模型的参数变化规则。以涉及自调节加热电缆的说明性示例为例,说明了ADT下加速因子恒定原理的应用。结果表明,加速因子常数原理提供了一种有吸引力且可靠的方法来帮助对加速退化数据进行建模。版权所有(c)2016 John Wiley&Sons,Ltd.

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