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Application of Degree of Cyclostationarity in Rolling Element Bearing Diagnosis

机译:循环平稳度在滚动轴承诊断中的应用

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摘要

Minor and random slip between rolling elements and races in rolling element bearings makes vibration signals have periodically time-varying ensemble statistics, which is known as cyclostationarity. Two second-order cyclostationary methods, the spectral correlation density (SCD) and the degree of cyclostationarity (DCS), are talked about in this paper based on a statistical model of rolling element bearings. The SCD provides redundant information in bi-frequency plane and cyclic frequency domain embodies the majority of it, which is a series of non-zero discrete cyclic frequencies completely reflecting the fault characters of rolling element bearings. The DCS has virtues of less computation and clearer representation, at the same time keeps the same characters with SCD in cyclic frequency domain. And the DCS is also proved to be resistant to the additive and multiplicative stationary noise. Simulation and experiential results from three rolling element bearing faults: outer race defect, inner race defect and rolling element defect, indicate practicability of the DCS analysis in rolling element bearing condition monitoring and fault diagnosis.
机译:滚动元件和滚动轴承中的座圈之间的微小和随机打滑使得振动信号具有周期性的时变整体统计,这被称为循环平稳性。本文基于滚动轴承的统计模型,讨论了频谱相关密度(SCD)和循环平稳度(DCS)这两种二阶循环平稳方法。 SCD在双频平面中提供冗余信息,而循环频域则体现了大部分信息,这是一系列非零离散循环频率,完全反映了滚动轴承的故障特征。 DCS具有运算量少,表示清晰的优点,同时在循环频域中与SCD保持相同的特性。而且,DCS还被证明可以抵抗加性和乘性平稳噪声。三种滚动轴承故障(外圈缺陷,内圈缺陷和滚动元件缺陷)的仿真和实验结果表明,DCS分析在滚动轴承状态监测和故障诊断中的实用性。

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