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Incipient fault information determination for rolling element bearing based on synchronous averaging reassigned wavelet scalogram

机译:基于同步平均重分配小波尺度图的滚动轴承早期故障信息确定

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摘要

As incipient fault of rotating machinery is weak and interfered by noise, it is difficult for characteristic information determination and incipient classification. In this research, a new method is put forward on rolling element bearing (REB) incipient impact information using synchronous averaging reassigned wavelet scalogram (SARWS) according to time-frequency analysis. Firstly, multi-cycle signal is processed by continuous wavelet transform. Then, time frequency distribution for every working cycle of vibration signal is obtained by wavelet scalogram (WS) based on time domain information. Thirdly, reassigned wavelet scalogram (RWS) for every working cycle of REB can be calculated. In the end, synchronous averaging is applied on RWS, which can effectively reduce noise interference and identify the weak fault information. Both simulated signals and real vibration signals collected from REB of rotating machinery are used to verify this proposed method. Analyzed results show that the proposed method is effective for REB incipient weak fault classification. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于旋转机械的初期故障较弱并且受噪声干扰,因此特征信息确定和初期分类很困难。在这项研究中,根据时频分析,使用同步平均重分配小波比例尺图(SARWS),提出了一种滚动轴承初始冲击信息的新方法。首先,通过连续小波变换处理多周期信号。然后,基于时域信息,通过小波比例尺(WS)获得振动信号每个工作周期的时频分布。第三,可以计算出REB每个工作周期的重新分配小波比例尺(RWS)。最后,在RWS上应用同步平均,可以有效减少噪声干扰并识别出较弱的故障信息。从旋转机械的REB收集的模拟信号和实际振动信号都用于验证该方法。分析结果表明,该方法对REB初期弱故障分类是有效的。 (C)2014 Elsevier Ltd.保留所有权利。

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