Torsional vibration assessment in railway traction system mechanical transmission

S. H. Kia, H. Henao, G. Capolino
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引用次数: 14

Abstract

The diagnosis of mechanical anomalies in railway traction system (RTS) have significant importance on traction system safety and reliability, which can avoid train derailment. This paper deals with torsional vibration assessment in mechanical transmission of RTS by a non-invasive technique. The previous studies on an elementary gearbox-based electromechanical system have shown that the influence of gearbox torsional vibration in torque and stator current signatures. It will be demonstrated here that in RTS the traction motor can be considered as a torque sensor through electromagnetic torque estimation for torsional vibration monitoring without any extra mechanical sensor. The results of estimation are compared with the measured mechanical torque and validated through a reduced-scale RTS simulator in stationary and non-stationary conditions.
铁路牵引系统机械传动扭振评价
铁路牵引系统的机械异常诊断对牵引系统的安全可靠运行具有重要意义,可以避免列车脱轨。本文采用无创技术对RTS机械传动中的扭振进行了评估。对基于初级齿轮箱的机电系统的研究表明,齿轮箱扭转振动对转矩和定子电流特征的影响。这里将证明,在RTS中,牵引电机可以被视为一个扭矩传感器,通过电磁扭矩估计进行扭转振动监测,而不需要任何额外的机械传感器。将估计结果与测量的机械扭矩进行了比较,并通过缩小比例的RTS模拟器在平稳和非平稳条件下进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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