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Identification of Physical and Excitation Parameters of Under-Chassis Equipment for Railway Vehicles

机译:铁路车辆底盘设备的物理参数和励磁参数的确定

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摘要

The accuracy of the physical parameters and excitation parameters of the under-chassis equipment has a significant impact on investigations of the coupled vibration of the vehicle body and the under-chassis equipment. In this study, an equipment vibration isolator test bench is used to develop a physical parameter identification method based on the free vibration acceleration response of the equipment and an excitation parameter identification method based on the forced vibration acceleration response. The equipment mass parameter and the center of the gravity position parameter can be obtained first through a static load test, and then, the inertia parameters can be obtained through a dynamic test. Identification of the excitation parameters of the equipment is based on the physical parameters and the acceleration response. The accuracy of the physical parameters directly affects the excitation parameter identification results. The larger the frequency ratio, the smaller the identification error will be, and the larger the damping ratio, the larger the identification error will be. The identification test results of single-frequency excitation and multifre-quency excitation show that the proposed excitation parameter identification method has high accuracy.
机译:底架设备的物理参数和激励参数的准确性对车身和底架设备的耦合振动的研究有重大影响。在这项研究中,使用设备隔振器试验台来开发基于设备自由振动加速度响应的物理参数识别方法和基于强制振动加速度响应的激励参数识别方法。设备质量参数和重心位置参数的中心可以先通过静载荷试验获得,然后再通过动态试验获得惯性参数。设备的励磁参数的识别基于物理参数和加速度响应。物理参数的准确性直接影响激励参数的识别结果。频率比越大,识别误差就越小,阻尼比越大,识别误差就越大。单频励磁和多频励磁的辨识测试结果表明,所提出的励磁参数辨识方法具有较高的精度。

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