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Anomaly detection using a modified kernel-based tracking in the pantograph-catenary system

机译:在受电弓-类别系统中使用改进的基于内核的跟踪进行异常检测

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Condition monitoring is very important in railway systems to reduce maintenance costs and to increase the safety. A high power is needed for the movement of the electric train and collection of the current is critical. Faults occurred in the current collection system cause serious damage in the line and disrupt the railway traffic. When a wear occurs on the contact strip, the asymmetries and distortion are generated in supply voltage and current waveforms because of pantograph arcing. Therefore, the monitoring of pantograph-catenary system has been a hot topic in recent years. This paper deals with a method based on kernel-based object tracking for identifying the interaction between pantograph-catenary systems that gives useful information about the problems of catenary-pantograph systems. The method consists of two key components. The first component is based on the kernel based tracking of the contact wire. The contact point between pantograph and catenary is tracked and the obtained positions are saved as a signal. In the other hand, the foreground of each frame is found by using Gaussian mixture models (GMMs). The occurred arcs are detected by combining tracking and foreground detection methods. The second component employs S-transform for analyzing the pantograph problems, which are used to detect the faults occurred on pantograph strip. The experimental results imply that the proposed method is useful to detect burst of arcing, and irregular positioning of the contact wire.
机译:在铁路系统中,状态监视对于降低维护成本和提高安全性非常重要。电动火车的行驶需要高功率,电流的收集至关重要。电流收集系统中发生的故障会严重破坏线路并中断铁路交通。当接触条发生磨损时,由于受电弓的电弧作用,电源电压和电流波形会产生不对称性和变形。因此,受电弓—类别系统的监视已成为近年来的热门话题。本文研究了一种基于内核的对象跟踪方法,用于识别受电弓与受电弓系统之间的相互作用,该方法可提供有关受电弓与受电弓系统问题的有用信息。该方法包括两个关键部分。第一个组件基于接触线的基于内核的跟踪。跟踪受电弓和悬链线之间的接触点,并将获得的位置保存为信号。另一方面,使用高斯混合模型(GMM)可以找到每个帧的前景。通过结合跟踪和前景检测方法来检测发生的电弧。第二部分采用S变换分析受电弓问题,用于检测受电弓条上的故障。实验结果表明,所提出的方法可用于检测电弧的爆发和接触线的不规则定位。

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