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Accurate Power Spectrum Estimation of a Damped Sinusoidal Signal Low SNR Cases Based on a Newly Defined Transfer Function

机译:基于新定义的传递函数的正弦信号阻尼低SNR情况下的精确功率谱估计

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摘要

This paper is concerned with a method to estimate the power spectrum of a periodic damped sinusoidal signal contaminated by high-level noise components when there are fluctuations in the period. A correlation between two spectral components exists at and around the resonant frequency of a damped sinusoidal signal. By using this property, the authors introduce a new transfer function defined from the resonant frequency component to every other component arou nd the resonant frequency to estimate the power spectrum of the damped sinusoidal signal. Since it can be assumed that there is no correlation between these two different frequencies for the noise components, the noise components in the cross spectrum at the two different frequencies decrease with the averaging operation. Consequently, the power spectrum of the damped sinusoidal signal is accurately estimated from the observed signals, even if the signal-to-noise ratio (SNR) is very low. The proposed method developed here is satisfactorily confirmed by simulation experiments. This method is further applied to the estimation of the power spectra of the vibration signals radiated from normal and defective automobile engines.
机译:本文涉及一种在周期中存在波动时估计被高电平噪声分量污染的周期性阻尼正弦信号的功率谱的方法。在衰减正弦信号的谐振频率及其周围,存在两个频谱分量之间的相关性。通过使用此特性,作者引入了一个新的传递函数,该函数从谐振频率分量到谐振频率周围的每个其他分量定义,以估计阻尼正弦信号的功率谱。由于可以假定这两个不同频率之间的噪声分量之间没有相关性,因此在两个不同频率处的互谱中的噪声分量会随着求平均操作而降低。因此,即使信噪比(SNR)非常低,也可以从观察到的信号中准确估算出阻尼正弦信号的功率谱。仿真实验令人满意地证实了本文提出的方法。该方法还用于估计从正常和有缺陷的汽车发动机辐射的振动信号的功率谱。

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