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USING EXTREME VALUE THEORY TO IDENTIFY RAILCAR ASYMMETRIC WHEEL WEAR AND ITS BENEFIT ANALYSIS

机译:利用极值理论识别铁路非对称轮磨损及其利益分析

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摘要

Railcar asymmetric wheel wear leads to severe wear on one wheel but mild wear on the other wheel. The consequences of the asymmetric wheel include accelerated wear, mechanical failure and downtime, and high financial penalties. Therefore, identifying the asymmetric wheel wear is critical not only for cost effective maintenance but also for safe operations. Fortunately, the increasing amount of various wayside detectors is instrumented along the railway that can monitor the health of railcar components and log plenty of detailed information about railroad operations. One can use this information to identify the asymmetric wheel wear in the early stage. However, most elliptically contoured distributions are effective in describing normal events but not in dealing with the outliers, which mainly locate in the tails of the distribution. Asymmetric wheel wear requires effective anomaly detection that mainly focuses on the extreme values in the tail of a right-skewed distribution. In this paper, we employ the Extreme Value Theory (EVT), which handles the unusually high or low data in the distribution, to derive an extreme value score to identify asymmetric wheel wear. Experiment results show that identification of asymmetric wheel wear can generate huge monetary benefit in terms of reducing average maintenance times of railcars.
机译:轨道车不对称轮磨损导致一轮的严重磨损,但在另一个轮子上轻度磨损。非对称轮的后果包括加速磨损,机械故障和停机,以及高的财务处罚。因此,识别不对称轮磨损至关重要,不仅适用于成本有效的维护,也适用于安全操作。幸运的是,各种航路探测器的越来越多的探测器沿铁路仪表,可以监控铁路车组件的运行状况,并记录有关铁路操作的大量详细信息。人们可以使用这些信息来识别早期阶段的非对称轮磨损。然而,大多数椭圆形的分布在描述正常事件时是有效的,但不适用于处理分布的尾部。不对称轮磨损需要有效的异常检测,主要侧重于右偏斜分布的尾部的极值。在本文中,我们采用了极值理论(EVT),它处理了分布中异常的高或低数据,以导出极值分数以识别不对称轮磨损。实验结果表明,在降低铁路的平均维护时间方面,不对称轮磨损的识别可以产生巨大的货币效益。

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