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Vibration signal correction of unbalanced rotor due to angular speed fluctuation

机译:角速度波动引起的不平衡转子振动信号校正

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摘要

The rotating speed of a rotor is hardly constant in practice due to angular speed fluctuation, which affects the balancing accuracy of the rotor. In this paper, the effect of angular speed fluctuation on vibration responses of the unbalanced rotor is analyzed quantitatively. Then, a vibration signal correction method based on zoom synchrosqueezing transform (ZST) and tacholess order tracking is proposed. The instantaneous angular speed (IAS) of the rotor is extracted by the ZST firstly and then used to calculate the instantaneous phase. The vibration signal is further resampled in angular domain to reduce the effect of angular speed fluctuation. The signal obtained in angular domain is transformed into order domain using discrete Fourier transform (DFT) to estimate the amplitude and phase of the vibration signal. Simulated and experimental results show that the proposed method can successfully correct the amplitude and phase of the vibration signal due to angular speed fluctuation.
机译:实际上,由于角速度波动,转子的旋转速度几乎恒定,这影响了转子的平衡精度。本文定量分析了角速度波动对不平衡转子振动响应的影响。然后,提出了一种基于缩放同步压缩变换(ZST)和无测速阶跟踪的振动信号校正方法。 ZST首先提取转子的瞬时角速度(IAS),然后将其用于计算瞬时相位。振动信号在角域中进一步采样,以减少角速度波动的影响。使用离散傅里叶变换(DFT)将在角域中获得的信号转换为阶域,以估计振动信号的幅度和相位。仿真和实验结果表明,该方法可以成功地校正由于角速度波动引起的振动信号的幅度和相位。

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