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Ensemble EMD-Based Automatic Extraction of the Catenary Structure Wavelength From the Pantograph–Catenary Contact Force

机译:基于EMD的受电弓-悬链接触力的悬链结构波长自动提取

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This paper explores the use of pantograph-catenary contact force (PCCF) for monitoring of the current collection quality and detection of anomalies in the interaction between pantograph and catenary. The concept of catenary structure wavelength (CSW) is proposed as the dominant component of PCCF. It describes the signal components caused by the cyclical catenary structure in span and interdropper distance. To obtain the CSWs and non-CSW residual of PCCF, an automatic extraction approach based on the ensemble empirical mode decomposition (EEMD) is proposed. In the approach, the instantaneous frequency of each intrinsic mode function generated by the EEMD is employed for the extraction of CSWs. Some selected trials on the PCCF data from simulation and measurement are performed and indicate that the extraction approach is adaptive to the PCCF under various circumstances, including different operation speeds, pantograph type, and catenary structure. Analyses on the extracted CSWs and non-CSW residual show that, with certain tolerance against measurement noise, the approach can preserve intact the characterizations of current collection quality and make anomalies easier to detect.
机译:本文探讨了受电弓与副接触力(PCCF)的使用,以监测电流收集质量并检测受电弓与悬链线之间的相互作用中的异常情况。提出了悬链结构波长(CSW)的概念作为PCCF的主要组成部分。它描述了跨度和滴管间距离中的周期性链状结构引起的信号分量。为了获得PCCF的CSW和非CSW残差,提出了一种基于集合经验模态分解(EEMD)的自动提取方法。在该方法中,由EEMD生成的每个固有模式函数的瞬时频率都用于提取CSW。对来自模拟和测量的PCCF数据进行了一些选定的试验,结果表明,提取方法在各种情况下都适用于PCCF,包括不同的运行速度,受电弓类型和接触网结构。对提取的CSW和非CSW残差的分析表明,在对测量噪声具有一定容忍度的情况下,该方法可以保留完整的电流收集质量特征,并使异常更易于检测。

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