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Research on Fault Detection and Isolation of Railway Vehicle Suspension System by Impulse Track Irregularity

机译:基于脉冲轨道不平顺的铁路车辆悬架系统故障检测与隔离研究

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The suspension system is one of the key components of the city rail train, whose status is directly related to the comfort, reliability, and security of the train. Urban rail train suspension system generally uses passive detection; the detection is achieved mainly by artificial periodic inspection, which wastes manpower, material, and financial resources. This paper uses the PLS (partial least squares) algorithm to perform the fault detection experiment of suspension system of urban rail vehicle under track irregularity. Under the effect of track irregularity, the experiment of suspension system of urban rail vehicle is carried out using the D-S (Dempster-Shafer) evidence theory. The research results show that the PLS algorithm can be used for fault detection in transit and fault warning, to ensure driving safety. D-S evidence theory can completely separate the fault component type.
机译:悬架系统是城市轨道火车的关键组件之一,其状态直接关系到火车的舒适性,可靠性和安全性。城市轨道车辆悬架系统一般采用被动检测;这种检测主要是通过人工定期检查来完成的,这浪费了人力,物力和财力。本文采用偏最小二乘算法对轨道不平顺下的城市轨道车辆悬架系统进行故障检测实验。在轨道不平顺的影响下,运用D-S(Dempster-Shafer)证据理论对城市轨道车辆悬架系统进行了实验。研究结果表明,PLS算法可用于交通运输中的故障检测和故障预警,以确保行车安全。 D-S证据理论可以完全分离故障分量类型。

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