Accurate Estimation of Low Fundamental Frequencies From Real-Valued Measurements

M. G. Christensen
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引用次数: 31

Abstract

In this paper, the difficult problem of estimating low fundamental frequencies from real-valued measurements is addressed. The methods commonly employed do not take the phenomena encountered in this scenario into account and thus fail to deliver accurate estimates. The reason for this is that they employ asymptotic approximations that are violated when the harmonics are not well-separated in frequency, something that happens when the observed signal is real-valued and the fundamental frequency is low. To mitigate this, we analyze the problem and present some exact fundamental frequency estimators that are aimed at solving this problem. These estimators are based on the principles of nonlinear least-squares, harmonic fitting, optimal filtering, subspace orthogonality, and shift-invariance, and they all reduce to already published methods for a high number of observations. In experiments, the methods are compared and the increased accuracy obtained by avoiding asymptotic approximations is demonstrated.
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从实值测量中精确估计低基频
本文解决了从实值测量中估计低基频的难题。通常采用的方法没有考虑到在这种情况下遇到的现象,因此无法提供准确的估计。这样做的原因是,当谐波在频率上没有很好地分离时,当观察到的信号是实值的,基频很低时,就会发生这种情况。为了减轻这个问题,我们分析了这个问题,并提出了一些精确的基频估计器,旨在解决这个问题。这些估计是基于非线性最小二乘、调和拟合、最优滤波、子空间正交性和移位不变性的原理,它们都减少到已经发表的大量观测的方法。在实验中,对这些方法进行了比较,并证明了避免渐近逼近所获得的精度提高。
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来源期刊
IEEE Transactions on Audio Speech and Language Processing
IEEE Transactions on Audio Speech and Language Processing 工程技术-工程:电子与电气
自引率
0.00%
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0
审稿时长
24.0 months
期刊介绍: The IEEE Transactions on Audio, Speech and Language Processing covers the sciences, technologies and applications relating to the analysis, coding, enhancement, recognition and synthesis of audio, music, speech and language. In particular, audio processing also covers auditory modeling, acoustic modeling and source separation. Speech processing also covers speech production and perception, adaptation, lexical modeling and speaker recognition. Language processing also covers spoken language understanding, translation, summarization, mining, general language modeling, as well as spoken dialog systems.
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