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Time-frequency analysis of vehicle/bridge coupling system based on Hilbert-Huang Transform

机译:基于希尔伯特-黄变换的车桥耦合系统时频分析

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In order to investigate the change of time-frequency characteristics of vehicle/track/bridge coupling system caused by wheel tread reprofiling, a coupling model of vehicle/track/bridge system is developed, the empirical mode decomposition (EMD) and Hilbert-Huang Transformation (HHT) are introduced to the analysis of vibration signal. Based on the theory of vehicle/track/-bridge coupling dynamics, vibration acceleration of coupling system of motor car moving over bridge are calculated before and after wheel tread reprofiling, respectively. Vibration signal of coupling system is firstly decomposed into intrinsic mode functions (IMFs) by EMD method, and then Hilbert marginal spectrum is obtained from Hilbert-Huang transform. Compared with Fourier amplitude spectrum, Hilbert spectrum has higher resolution power in frequency domain in the time-frequency analysis. The simulation indicates that the proposed method is effective in the time-frequency characteristics extraction of vehicle/track/bridge coupling system.
机译:为了研究车轮胎纹重塑引起的车辆/轨道/桥梁耦合系统时频特性的变化,建立了车辆/轨道/桥梁系统的耦合模型,并进行了经验模态分解(EMD)和希尔伯特-黄变换(Hilbert-Huang Transformation)。 (HHT)被引入到振动信号分析中。基于车辆/轨道/桥梁耦合动力学理论,分别计算了车轮胎面重塑前后的汽车耦合系统的振动加速度。首先通过EMD方法将耦合系统的振动信号分解为固有模式函数(IMF),然后通过希尔伯特-黄变换得到希尔伯特边际谱。与傅立叶振幅谱相比,希尔伯特谱在时频分析中具有更高的频域分辨能力。仿真表明,该方法在车辆/轨道/桥梁耦合系统的时频特性提取中是有效的。

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