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Reliability Evaluation of Smart Meters Under Degradation-Shock Loads Based on Phase-Type Distributions

机译:基于相位类型分布的降解冲击负载下智能仪表的可靠性评估

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摘要

To address the problem that high-reliability and long-life complex products are susceptible to coupled fault mechanisms, and to address the challenge of constructing a macro fault behavior model for reliability evaluation, the reliability of a smart meter based on a Phase-Type (PH) distribution under a degradation-shock load is examined. This reliability assessment method considers the impacts of environmental stress and lightning shock on a smart meter. The performance degradation process caused by environmental stress is described by a Wiener model, which is converted into a representation of a PH distribution in a subsequent step. A lightning impulse can cause performance degradation or direct failure of a smart meter. The arrival time of the lightning, the magnitude of the lightning, and the damage caused by the lightning are analyzed separately, and then, the obtained model is expressed in the form of a PH distribution. Finally, a reliability evaluation model of a smart meter based on the PH model under a degradation-shock load is established. The accuracy of the model is verified by comparing the model results with Monte Carlo simulation results.
机译:为了解决高可靠性和长寿命复杂产品易受耦合故障机制的问题,并解决构建可靠性评估的宏故障行为模型的挑战,基于相位类型的智能仪表的可靠性(检查pH)在降解冲击载荷下的分布。这种可靠性评估方法考虑了环境压力和雷击对智能仪表的影响。由环境应力引起的性能劣化过程由维纳模型描述,其被转换成后续步骤中pH分布的表示。闪电脉冲会导致智能仪表的性能下降或直接失效。分别分析闪电的到达时间,闪电幅度以及由闪电引起的损坏,然后以pH分布的形式表示所获得的模型。最后,建立了基于劣化冲击负载下的pH模型的智能仪表的可靠性评估模型。通过将模型结果与Monte Carlo仿真结果进行比较来验证模型的准确性。

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