1. 大连理工大学建设工程学部
2. 东莞市诺丽电子科技有限公司
3. 深圳市简测智能技术有限公司
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雷雨恒, 任亮, 刘强平, 等. 基于应变响应反演技术的弓网动态接触力监测方法及应用研究[J]. 机械强度, 2022,(6):1300-1306.
LEI YuHeng, REN Liang, LIU QiangPing, et al. RESEARCH ON MONITORING METHOD AND APPLICATION OF THE DYNAMIC CONTACT FORCE BETWEEN CATENARY AND PANTOGRAPH BASED ON STRAIN RESPONSE INVERSION TECHNOLOGY (MT)[J]. Journal of Mechanical Strength , 2022,(6):1300-1306.
雷雨恒, 任亮, 刘强平, 等. 基于应变响应反演技术的弓网动态接触力监测方法及应用研究[J]. 机械强度, 2022,(6):1300-1306. DOI: 10.16579/j.issn.1001.9669.2022.06.05.
LEI YuHeng, REN Liang, LIU QiangPing, et al. RESEARCH ON MONITORING METHOD AND APPLICATION OF THE DYNAMIC CONTACT FORCE BETWEEN CATENARY AND PANTOGRAPH BASED ON STRAIN RESPONSE INVERSION TECHNOLOGY (MT)[J]. Journal of Mechanical Strength , 2022,(6):1300-1306. DOI: 10.16579/j.issn.1001.9669.2022.06.05.
实时监测接触网-受电弓的动态接触力对于弓网取流质量的评估至关重要。提出了一种基于应变响应反演弓网动态接触力大小和受力位置的监测方法,详细阐述了该方法的测量原理和传感器安装方法以及关键参数的标定实验。基于该方法的弓网动态接触力监测系统成功应用于某地铁刚性架空接触网测试项目中,对地铁在60 km/h和80 km/h运行状态下受电弓弓网动态接触力大小及位置进行实时监测和分析。结果表明,基于应变响应反演技术的动态接触力测量方法具有测量精度高、数据一致性好、传感器安装灵活的优点,不仅可以准确地还原弓网动态接触力,而且可以定位受电弓碳滑板上的弓网接触位置,能够有效的评估弓网耦合系统的性能质量。
In-situ monitoring of the dynamic contact force between catenary and pantograph is very important for the quality evaluation of pantograph catenary current collection. A monitoring method based on strain response was proposed to invert the value and position of the dynamic contact force between catenary and pantograph. The measurement principle, sensor installation method and calibration experiment of key parameters were described in detail. The monitoring system has been successfully applied to a metro test project with rigid overhead catenary. And the dynamic contact force between pantograph and catenary was monitored and analyzed when the subway was running at the speed of 60 km/h and 80 km/h, respectively. The results indicated that the dynamic contact force measurement method based on strain response has the advantages of high measurement accuracy, good data consistency and flexible sensor installation. It can not only accurately restore the value of dynamic contact force between catenary and pantograph, but also locate the position of the dynamic contact force on the carbon slide of pantograph. This work can effectively evaluate the performance quality of the coupling system of pantograph and catenary.
受电弓弓网动态接触力反演结构健康监测
PantographDynamic contact force between pantograph and catenaryInversionStructural health monitoring
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