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An Interpolation Algorithm for Discrete Fourier Transforms of Weighted Damped Sinusoidal Signals

机译:加权阻尼正弦信号离散傅里叶变换的插值算法

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An algorithm for improving the accuracy of the estimation of parameters that characterize a multifrequency damped sinusoidal signal is presented. The core ideas of the algorithm is that the signal is weighted using Hann window before discrete Fourier transform and the frequencies, amplitudes, phases, and damping factors of the signal are obtained by frequency domain interpolation. It is shown that the purpose of improving the accuracy of parameter estimation is achieved using Hann window, which reduces long-range leakage and frequency-domain interpolation that eliminates the effect of the picket fence. The sensitivity analysis of the changing of the signal parameters, noise and spectral resolution, shows that both the effects of strong noise and spectral interference are considered, proving the reliability and high-accuracy parameters estimation in a number of engineering applications. Otherwise, the characteristic of efficiency computational and low memory demands are advantageously adopted for the poor computing resources situations. Extracting the impact signal of the rotor test bed using this method is illustrated. The result shows that the method can be an optional method for the fault features extraction of the mechanical impact.
机译:提出了一种提高表征多频阻尼正弦信号的参数估计精度的算法。该算法的核心思想是在离散傅里叶变换之前使用Hann窗对信号进行加权,并通过频域插值获得信号的频率,幅度,相位和阻尼因子。结果表明,使用Hann窗口可以达到提高参数估计精度的目的,它可以减少远程泄漏和频域插值,从而消除了栅栏的影响。对信号参数,噪声和频谱分辨率的变化进行敏感性分析,结果表明,考虑了强噪声和频谱干扰的影响,证明了在许多工程应用中的可靠性和高精度参数估计。否则,对于较差的计算资源情况,将有利地采用效率计算和低存储器需求的特性。说明了使用这种方法提取转子测试台的冲击信号。结果表明,该方法可以作为机械冲击故障特征提取的一种可选方法。

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