首页> 外文期刊>Archives of Metallurgy and Materials >HILBERT-TWIN - A NOVEL HILBERT TRANSFORM-BASED METHOD TO COMPUTE THE ELASTIC MODULUS IN HIGH-RESOLUTION MECHANICAL SPECTROSCOPY HRMS
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HILBERT-TWIN - A NOVEL HILBERT TRANSFORM-BASED METHOD TO COMPUTE THE ELASTIC MODULUS IN HIGH-RESOLUTION MECHANICAL SPECTROSCOPY HRMS

机译:希尔伯特 - 基于新型的Hilbert变换的方法,用于计算高分辨率机械光谱HRMS中的弹性模量

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摘要

A novel Hilbert-twin (H-twin) method is introduced as an alternative method for the computation of the resonant frequency for exponentially damped free decays embedded in noise. We also present the comparison among the following methods used to compute the dynamic elastic modulus in solids: the parametric OMI (Optimization in Multiple Intervals), the Yoshida-Magalas (YM) interpolated discrete Fourier transform, the Hilbert-twin (H-twin), and discrete Fourier transform (DFT) methods. It is concluded that the OMI and YM methods are the best methods to compute the elastic modulus from discrete exponentially damped free-elastic decays embedded in unavoidable noise.
机译:引入了一种新的Hilbert-Twin(H-Twin)方法作为计算嵌入噪声中的指数阻尼自由衰减的谐振频率的替代方法。 我们还介绍了用于计算固体中动态弹性模量的以下方法的比较:参数OMI(以多次间隔优化),Yoshida-Magalas(YM)内插离散傅里叶变换,Hilbert-Twin(H-Twin) 和离散的傅里叶变换(DFT)方法。 结论是,OMI和YM方法是计算从不可避免的噪声中嵌入不可避免的噪声的离散指数阻尼自由弹性衰减的弹性模量的最佳方法。

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