频率解调辅助动力传动齿轮箱状态监测

Dingguo Lu, W. Qiao
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引用次数: 14

摘要

传动系统齿轮箱的状态监测与故障诊断(CMFD)已成为各行业面临的突出挑战。与传统的基于振动的诊断技术相比,当前基于振动的诊断技术在可及性、成本、实施和可靠性方面具有显著优势。本文提出了一种基于电流的、频率解调辅助的传动系统齿轮箱的CMFD方法。建立了由两级齿轮箱和永磁同步发电机组成的传动系统的数学模型,推导了齿轮箱故障在永磁同步发电机定子电流下的特征频率。提出了一种自适应信号重采样方法,将变速传动系统的可变故障特征频率转换为恒定值。提出了一种结合希尔伯特变换、有限脉冲响应(FIR)微分器和相位展开算法的解调方法,以提取与故障诱发的齿轮箱振动相关的瞬时频率模式。提出了一种故障检测器,对提取的故障特征进行统计分析,用于齿轮箱故障诊断。实验研究验证了所提方法的有效性。
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Frequency demodulation-aided condition monitoring for drivetrain gearboxes
Condition monitoring and fault diagnosis (CMFD) of drivetrain gearboxes has become a prominent challenge in assorted industries. Current-based diagnostic techniques have significant advantages over traditional vibration-based techniques in terms of accessibility, cost, implementation and reliability. This paper proposes a current-based, frequency demodulation-aided CMFD method for drivetrain gearboxes. A mathematical model is developed for a drivetrain consisting of a two-stage gearbox and a permanent magnet synchronous generator (PMSG), from which the characteristic frequencies of gearbox faults in the PMSG stator current are derived. An adaptive signal resampling method is proposed to convert the variable fault characteristic frequencies to constant values for the drivetrain running at variable speed conditions. A demodulation method, combining the Hilbert transform, a finite impulse response (FIR) differentiator, and a phase unwrapping algorithm, is developed to extract the instantaneous frequency (IF) patterns that are related to the fault-induced gearbox vibration. A fault detector is proposed for diagnosis of gearbox faults using statistical analysis on the extracted fault signatures. Experimental studies are carried out to validate the effectiveness of the proposed method.
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