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Optimal Design of the Absolute Positioning Sensor for a High-Speed Maglev Train and Research on Its Fault Diagnosis

机译:高速磁悬浮列车绝对位置传感器的优化设计及其故障诊断研究

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This paper studies an absolute positioning sensor for a high-speed maglev train and its fault diagnosis method. The absolute positioning sensor is an important sensor for the high-speed maglev train to accomplish its synchronous traction. It is used to calibrate the error of the relative positioning sensor which is used to provide the magnetic phase signal. On the basis of the analysis for the principle of the absolute positioning sensor, the paper describes the design of the sending and receiving coils and realizes the hardware and the software for the sensor. In order to enhance the reliability of the sensor, a support vector machine is used to recognize the fault characters, and the signal flow method is used to locate the faulty parts. The diagnosis information not only can be sent to an upper center control computer to evaluate the reliability of the sensors, but also can realize on-line diagnosis for debugging and the quick detection when the maglev train is off-line. The absolute positioning sensor we study has been used in the actual project.
机译:本文研究了一种用于高速磁悬浮列车的绝对定位传感器及其故障诊断方法。绝对位置传感器是高速磁悬浮列车完成其同步牵引力的重要传感器。它用于校准相对定位传感器的误差,该相对定位传感器用于提供磁相位信号。在对绝对定位传感器原理进行分析的基础上,介绍了发送和接收线圈的设计,并实现了传感器的硬件和软件。为了提高传感器的可靠性,使用支持向量机识别故障特征,并采用信号流法定位故障部位。诊断信息不仅可以发送到上层中央控制计算机,以评估传感器的可靠性,而且还可以实现在线诊断,以便在磁悬浮列车离线时进行调试和快速检测。我们研究的绝对定位传感器已在实际项目中使用。

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