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Study on vibration mode of remanufactured engine based on EEMD

机译:基于EEMD的再造发动机振动模式研究

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In order to extract the vibration feature of remanufactured engines, the vibration signal is decomposed by ensemble empirical mode decomposition(EEMD), and this method is applied to study vibration mode of remanufactured engines. Based on the decomposition of vibration signal, correlation coefficient is introduced to study the correlation between IMF(Intrinsic Mode Function) components and original signal, and sensitive factors of IMF components are calculated using correlation coefficients. Hilbert transform is made with sensitive IMF components. The study results show that vibration feature of remanufactured engines is include in IMF components decomposed by EEMD, the vibration modes of remanufactured engines can be differentiated by Hilbert-Huang spectrum and marginal spectrum based on sensitive IMF components. According to vibration feature, the vibration state of remanufactured engines is divided into cylinder wall, cylinder cover and crankshaft vibration modes, which are important to improve the remanufacture level of engines.
机译:为了提取再制造发动机的振动特征,通过整体经验模态分解(EEMD)对振动信号进行分解,并将该方法用于研究再制造发动机的振动模式。基于振动信号的分解,引入相关系数来研究IMF(本征函数)分量与原始信号之间的相关性,并利用相关系数计算IMF分量的敏感因子。希尔伯特变换是使用敏感的IMF组件进行的。研究结果表明,再造发动机的振动特征包含在EEMD分解后的IMF组件中,再利用敏感的IMF组件,可以通过Hilbert-Huang谱和边际谱来区分再制造发动机的振动模式。根据振动特性,将再制造发动机的振动状态分为缸壁,缸盖和曲轴振动模式,这对于提高发动机的再制造水平至关重要。

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