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首页> 外文期刊>Journal of Zhejiang University. Science, A >Comparison of different techniques for time-frequency analysis of internal combustion engine vibration signals
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Comparison of different techniques for time-frequency analysis of internal combustion engine vibration signals

机译:内燃机振动信号时频分析不同技术的比较

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In this study, we report an analysis of cylinder head vibration signals at a steady engine speed using short-time Fourier transform (STFT). Three popular time-frequency analysis techniques, i.e., STFT, analytic wavelet transform (AWT) and s transform (ST), have been examined. AWT and ST are often applied in engine signal analyses. In particular, an AWT expression in terms of the quality factor Q and an analytical relationship between ST and AWT have been derived. The time-frequency resolution of a Gaussian function windowed STFT was studied via numerical simulation. Based on the simulation, the empirical limits for the lowest distinguishable frequency as well as the time and frequency resolutions were determined. These can provide insights for window width selection, spectrogram interpretation and artifact identification. Gaussian function windowed STFTs were applied to some cylinder head vibration signals. The spectrograms of the same signals from ST and AWT were also determined for comparison. The results indicate that the uniform resolution feature of STFT is not necessarily a disadvantage for time-frequency analysis of vibration signals when the engine is in stationary state because it can more accurately localize the frequency components excited by transient excitations without much loss of time resolution.
机译:在这项研究中,我们使用短时傅里叶变换(STFT)报告了稳定发动机速度的汽缸盖振动信号的分析。已经检查了三种普遍的时频分析技术,即STFT,分析小波变换(AWT)和S变换(ST)。 AWT和ST通常应用于发动机信号分析。特别地,已经导出了质量因子Q和ST和AWT之间的分析关系的AWT表达。通过数值模拟研究了高斯函数窗口STFT的时频分辨率。基于模拟,确定了最低可区分频率以及时间和频率分辨率的经验极限。这些可以为窗口宽度选择,谱图解释和工件识别提供见解。高斯函数窗口STFT应用于一些气缸耳振信号。还确定了来自ST和AWT的相同信号的谱图以进行比较。结果表明,当发动机处于静止状态时,STFT的均匀分辨率不一定是振动信号时频率分析的缺点,因为它可以更准确地本地化通过瞬态激励激发的频率分量而不会损失时间分辨率。

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