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Harmonic Bandwidth Companding for Separation of Overlapping Harmonics in Pitched Signals

机译:谐波带宽扩展,用于分离俯仰信号中的重叠谐波

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摘要

We present a novel approach to separating pitched signals from single-channel mixtures by harmonic bandwidth companding. Recalling that in a short analysis window the harmonic waveform envelope conveys information about approximate amplitude and frequency time variations, we show that proper linear waveform envelope smoothing reduces frequency spread around the harmonics and thus compresses the harmonic bandwidth. Such an action largely relaxes worst-case separation scenarios, which are caused by large proportions of overlapped harmonics. The distortion in separated signals due to harmonic bandwidth compression is compensated by an inverse system—the harmonic bandwidth expander. The benefit of such an approach is that explicit classification in overlapped and non-overlapped harmonics is no longer needed. Moreover, the underlying signal model is linear-in-parameters which allows for an efficient estimation via linear least-squares. The results show that harmonic bandwidth companding significantly outperforms two state-of-the-art separation methods.
机译:我们提出了一种通过谐波带宽压扩从单通道混合信号中分离出基音信号的新颖方法。回想一下,在一个简短的分析窗口中,谐波波形包络传达了有关近似幅度和频率时间变化的信息,我们表明适当的线性波形包络平滑可减少谐波周围的频率扩展,从而压缩谐波带宽。这样的动作在很大程度上缓解了最坏情况的分离情况,这是由大量重叠的谐波引起的。谐波带宽压缩所导致的分离信号中的失真由逆系统(谐波带宽扩展器)补偿。这种方法的好处是不再需要对重叠和非重叠谐波进行明确的分类。此外,基础信号模型是参数线性的,可以通过线性最小二乘法进行有效估计。结果表明,谐波带宽压扩明显优于两种最新的分离方法。

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