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Rate of occurrence of failures based on a nonhomogeneous Poisson process: an ozone analyzer case study

机译:基于非均匀泊松过程的故障发生率:臭氧分析仪案例研究

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Atmospheric pollutant monitoring constitutes a primordial activity in public policies concerning air quality. In Sao Paulo State, Brazil, the Sao Paulo State Environment Company (CETESB) maintains an automatic network which continuously monitors CO, SO_2, NO_x, O_3, and particulate matter concentrations in the air. The monitoring process accuracy is a fundamental condition for the actions to be taken by CETESB. As one of the support systems, a preventive maintenance program for the different analyzers used is part of the data quality strategy. Knowledge of the behavior of analyzer failure times could help optimize the program. To achieve this goal, the failure times of an ozone analyzer-considered a repairable system-were modeled by means of the nonhomogeneous Poisson process. The rate of occurrence of failures (ROCOF) was estimated for the intervals 0-70,800 h and 0-88,320 h, in which six and seven failures were observed, respectively. The results showed that the ROCOF estimate is influenced by the choice of the observation period, t_0=70,800 h and t_7=88,320 h in the cases analyzed. Identification of preventive maintenance actions, mainly when parts replacement occurs in the last interval of observation, is highlighted, justifying the alteration in the behavior of the inter-arrival times. The performance of a follow-up on each analyzer is recommended in order to record the impact of the performed preventive maintenance program on the enhancement of its useful life.
机译:在有关空气质量的公共政策中,大气污染物监测是一项主要活动。在巴西圣保罗州,圣保罗州环境公司(CETESB)维护着一个自动网络,该网络连续监测空气中的CO,SO_2,NO_x,O_3和颗粒物浓度。监测过程的准确性是CETESB采取行动的基本条件。作为支持系统之一,针对所使用的不同分析仪的预防性维护程序是数据质量策略的一部分。了解分析仪故障时间的行为可以帮助优化程序。为了实现此目标,通过非均匀泊松过程对考虑到可修复系统的臭氧分析仪的故障时间进行了建模。在0-70,800 h和0-88,320 h的时间间隔内估计故障发生率(ROCOF),其中分别观察到6和7个故障。结果表明,在所分析的情况下,ROCOF估计值受观察期选择的影响,t_0 = 70,800 h和t_7 = 88,320 h。突出显示预防性维护措施的识别,主要是在观察的最后间隔进行零件更换时,以证明到达间隔时间的行为发生了变化。建议记录每台分析仪的性能,以记录所执行的预防性维护计划对延长其使用寿命的影响。

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