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A New Experimental Approach Using Image Processing-Based Tracking for an Efficient Fault Diagnosis in Pantograph–Catenary Systems

机译:一种基于图像处理的跟踪的新实验方法,用于受电弓–悬架系统的有效故障诊断

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摘要

The periodical maintenance of railway systems is very important in terms of maintaining safe and comfortable transportation. In particular, the monitoring and diagnosis of faults in the pantograph catenary system are required to provide a transmission from the catenary line to the electric energy locomotive. Surface wear that is caused by the interaction between the pantograph and catenary and nonuniform distribution on the surface of a pantograph of the contact points can cause serious accidents. In this paper, a novel approach is proposed for image processing-based monitoring and fault diagnosis in terms of the interaction and contact points between the pantograph and catenary in a moving train. For this purpose, the proposed method consists of two stages. In the first stage, the pantograph catenary interaction has been modeled; the simulation results were given a failure analysis with a variety of scenarios. In the second stage, the contact points between the pantograph and catenary were detected and implemented in real time with image processing algorithms using actual video images. The pantograph surface for a fault analysis was divided into three regions: safe, dangerous, and fault. The fault analysis of the system was presented using the number of contact points in each region. The experimental results demonstrate the effectiveness, applicability, and performance of the proposed approach.
机译:就保持安全舒适的运输而言,铁路系统的定期维护非常重要。尤其是,需要对受电弓悬链系统中的故障进行监视和诊断,以提供从悬链线到电能机车的传输。受电弓与悬链线之间的相互作用以及受电弓的接触点分布不均匀所引起的表面磨损会导致严重的事故。在本文中,针对受电弓与悬链线之间的相互作用和接触点,提出了一种基于图像处理的监视和故障诊断的新方法。为此,所提出的方法包括两个阶段。在第一阶段,对受电弓的悬链相互作用进行了建模。对仿真结果进行了多种情况下的故障分析。在第二阶段,受电弓和悬链线之间的接触点被检测到,并使用使用实际视频图像的图像处理算法实时实现。用于故障分析的受电弓表面分为三个区域:安全,危险和故障。使用每个区域中的接触点数量来介绍系统的故障分析。实验结果证明了该方法的有效性,适用性和性能。

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