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Fault Diagnosis of Planetary Gearbox under Nonstationary Conditions Based on the Velocity Synchronous Chirplet Transform

机译:基于速度同步Chirplet变换的非平稳状态行星齿轮箱故障诊断

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Planetary gearboxes are widely used in industrial equipment and they usually work under non-stationary conditions. Condition monitoring and fault diagnosis are important for them to avoid run-time breakdowns and one effective way is analyzing the vibration signal collected from them in time-frequency plane. This paper presents a time-frequency analysis method, named the velocity synchronous chirplet transform (VSCT), to reveal the time-varying characteristics of planetary gearbox vibration signal for fault diagnosis. Compared with other popular time-frequency methods, the advantages of VSCT include: (1) it is free from smear effect and cross-term interference and (2) it is able to determine the parameters adaptively according to the signal, therefore avoid error-prone human intervention. In this paper, the VSCT method is applied to detect the time-varying fault characteristic frequencies of sun gear from a lab planetary gearbox experimental signal.
机译:行星齿轮箱广泛用于工业设备,它们通常在非平稳条件下工作。状态监测和故障诊断对于它们避免运行时故障很重要,而一种有效的方法是分析在时频平面中从它们收集的振动信号。本文提出了一种时频分析方法,称为速度同步Chirplet变换(VSCT),以揭示用于诊断的行星齿轮箱振动信号的时变特性。与其他流行的时频方法相比,VSCT的优势包括:(1)无拖影效应和交叉项干扰;(2)能够根据信号自适应地确定参数,因此避免了误差-容易受到人为干预。在本文中,VSCT方法被用于从实验室行星齿轮箱实验信号中检测太阳齿轮的时变故障特征频率。

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