Accelerated Life Test Modeling of Outdoor Optical Products with Time-Varying Multi-Stresses

Q4 Engineering Journal of the IEST Pub Date : 2008-10-20 DOI:10.17764/JIET.51.2.G751061R06T68867
C. Lam, Huairui Guo
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Abstract

The long-term performance prediction of optical products deployed outdoors is important. The accuracy of the prediction directly affects warranty cost calculations. In indoor environments, products are generally operated under controlled temperature and humidity. However, products outdoors usually experience multiple stresses that continuously vary with time. An outdoor-use optical product, such as a fiber distribution hub cabinet with splitters, connectors, and fan-outs built in, will experience temperature cycling effects and varying humidity. Therefore, time-varying temperature and humidity are considered as major stresses acting on outdoor-use optical products. This study proposes a practical method that uses design of experiment (DOE) techniques and generalized log-linear (GLL) life-stress relationship to predict the life of outdoor optical products. The proposed method can consider the cumulative damage caused by time-varying temperature and humidity and was applied to predict the warranty return of...
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时变多应力户外光学产品加速寿命试验建模
部署在户外的光学产品的长期性能预测是重要的。预测的准确性直接影响保修成本的计算。在室内环境中,产品一般在受控的温度和湿度下操作。然而,户外产品通常会经历多重压力,这些压力随时间不断变化。户外使用的光学产品,如内置分路器、连接器和风扇的光纤配电集线器机柜,将经历温度循环效应和湿度变化。因此,时变的温度和湿度被认为是作用在户外光学产品上的主要应力。本研究提出一种实用的方法,利用实验设计(DOE)技术和广义对数线性(GLL)寿命-应力关系来预测户外光学产品的寿命。该方法考虑了时变温度和湿度造成的累积损伤,并应用于产品保修退货的预测。
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来源期刊
Journal of the IEST
Journal of the IEST Engineering-Safety, Risk, Reliability and Quality
CiteScore
0.40
自引率
0.00%
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0
期刊介绍: The Journal of the IEST is an official publication of the Institute of Environmental Sciences and Technology and is of archival quality and noncommercial in nature. It was established to advance knowledge through technical articles selected by peer review, and has been published for over 50 years as a benefit to IEST members and the technical community at large as as a permanent record of progress in the science and technology of the environmental sciences
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