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Damage Identification of an Automotive Engine Based on Detection of Impact Vibration using an Adaptive Filter

机译:基于自适应滤波器的冲击振动检测的汽车发动机损伤识别

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摘要

In an automotive engine, faults induce impulsive vibrations and thereby degrade engine performance, making it important for an automotive engineer to detect and analyze impulsive vibration signals for fault diagnosis. However, detecting and identifying impulsive signals is often difficult because of interfering signals such as those due to engine firing, harmonics of crankshaft speed and broadband noise components. These interferences hinder early fault detection. To overcome this difficulty we present a two-stage ALEF (Adaptive Line Enhancer Filter) that is capable of enhancing impulsive signals embedded in background noise. This method is used to pre-process signals prior to time-frequency analysis via higher order methods such as the combined higher order time-frequency.
机译:在汽车发动机中,故障会引起脉冲振动,从而降低发动机性能,因此对于汽车工程师来说,检测和分析脉冲振动信号以进行故障诊断非常重要。然而,由于诸如发动机点火,曲轴转速的谐波和宽带噪声分量所引起的干扰信号之类的干扰信号,通常难以检测和识别脉冲信号。这些干扰阻碍了早期故障检测。为了克服这一困难,我们提出了一种两级ALEF(自适应线路增强器滤波器),它能够增强嵌入在背景噪声中的脉冲信号。此方法用于通过更高阶方法(例如组合的更高阶时频)在进行时频分析之前对信号进行预处理。

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