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A guided wave approach for real-time health monitoring of high-speed train bogie frames

机译:高速列车转向架构架实时健康监测的导波方法

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An online health monitoring system (OHMS) was tailor-made and implemented for structural health monitoring (SHM) of train structures. A sensor network made up of miniature piezoelectric wafers was configured on the bogie frames of China's latest high-speed train model. Ultrasonic guided waves were generated through the sensor network, and a variety of signal features were retrieved and fused by the system's built-in program. During the train's conformance testing on the Beijing-Shanghai High-Speed Railway, continuous SHM was carried out for departure, speed-up, full speed operation (300 km/h), emergency brake, track change, and stop. Artificial damage affixed to the bogie's side panel was successfully located by the OHMS under both static and dynamic conditions, and the results were rapidly visualized through a probability-based diagnostic imaging algorithm. This in-situ test has demonstrated the practicality and effectiveness of guided-wave-based SHM for high-speed train bogies under working conditions.
机译:量身定制了一个在线健康监测系统(OHMS),并用于列车结构的结构健康监测(SHM)。在中国最新的高速火车模型的转向架框架上配置了由微型压电晶片组成的传感器网络。超声波导波通过传感器网络生成,系统的内置程序检索并融合了各种信号特征。在京沪高铁列车的一致性测试中,对出发,提速,全速运行(300 km / h),紧急制动,换轨和停车进行了连续SHM。 OHMS在静态和动态条件下都成功定位了固定在转向架侧板上的人为损坏,并通过基于概率的诊断成像算法将结果快速可视化。这项现场测试证明了基于导波的SHM在高速列车转向架上的实用性和有效性。

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