首页> 外文会议>International Society of Automation International Instrumentation Symposiun >DIAGNOSIS METHOD FOR RUB-IMPACT FAULT OF ROTATING MACHINERY BASED ON EMD AND HILBERT ENVELOP SPECTRUM
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DIAGNOSIS METHOD FOR RUB-IMPACT FAULT OF ROTATING MACHINERY BASED ON EMD AND HILBERT ENVELOP SPECTRUM

机译:基于终端和希尔伯特信封谱的旋转机械摩擦冲击故障诊断方法

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Aiming at the characteristics of the casing vibration acceleration signal of rotating machinery with rubbing fault, a diagnosis method based on EMD (empirical mode decomposition) and Hilbert envelop spectrum is put forward. When the rubbing fault occurs between the rotor and the stator, the vibration acceleration signals from the casing of the rooting machinery will present amplitude-modulated feature due to the periodical rub-impact between the rotor and the stator. However, it is relatively difficult to extract the rub-impact feature since the rub-impact signal in the process of transferring to the casing is always buried in the noise and background signals. In this paper, by means of the powerful capability of EMD and Hilbert envelop spectrum in processing nonlinear signal can accurately describe nonlinear behaviours, the fault signal is adaptively decomposed by EMD to acquire intrinsic mode functions (IMF) containing obvious feature of amplitude modulation. Then some of the sensitive IMF components are transformed by FFT and their Hilbert spectrum are analysed. The analysis results from the experimental signal show that the EMD provides an effective and adaptive method to obtain 'purified' casing vibration acceleration signal, which demonstrates the transient casing vibration more precisely and vividly, decreasing misinterpretation of the machine running condition. Therefore, the EMD approach can be applied to the single-point rubbing fault diagnosis of the rotor systems efficiently.
机译:针对旋转机械套管振动加速信号的特点,提出了一种基于EMD(经验模式分解)和希尔伯特包络谱的诊断方法。当转子和定子之间发生摩擦发生故障时,由于转子和定子之间的周期性擦伤,来自生根机械的壳体的振动加速信号将呈现幅度调制特征。然而,由于将转移到壳体的过程中的擦伤信号始终埋入噪声和背景信号中,因此相对难以提取摩擦冲击特征。本文通过加工非线性信号的EMD和HILBERT信封频谱的强大能力可以准确地描述非线性行为,通过EMD自适应地分解故障信号,以获取包含幅度调制明显特征的内在模式功能(IMF)。然后,一些敏感的IMF组件由FFT转换,分析其HILBERT谱。实验信号的分析结果表明,EMD提供了一种有效和自适应的方法,以获得“净化”套管振动加速信号,这更精确且生动地展示了瞬态套管振动,降低了机器运行条件的误解。因此,EMD方法可以有效地应用于转子系统的单点摩擦故障诊断。

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