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Spectrum and Prosody Conversion for Cross-lingual Voice Conversion with CycleGAN

机译:频谱和韵律转换与Conscangan的交叉语音转换

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Cross-lingual voice conversion aims to change source speaker’s voice to sound like that of target speaker, when source and target speakers speak different languages. It relies on nonparallel training data from two different languages, hence, is more challenging than mono-lingual voice conversion. Previous studies on cross-lingual voice conversion mainly focus on spectral conversion with a linear transformation for F0 transfer. However, as an important prosodic factor, F0 is inherently hierarchical, thus it is insufficient to just use a linear method for conversion. We propose the use of continuous wavelet transform (CWT) decomposition for F0 modeling. CWT provides a way to decompose a signal into different temporal scales that explain prosody in different time resolutions. We also propose to train two CycleGAN pipelines for spectrum and prosody mapping respectively. In this way, we eliminate the need for parallel data of any two languages and any alignment techniques. Experimental results show that our proposed Spectrum-Prosody-CycleGAN framework outperforms the Spectrum-CycleGAN baseline in subjective evaluation. To our best knowledge, this is the first study of prosody in cross-lingual voice conversion.
机译:当源头和目标扬声器说不同语言时,交叉语音转换旨在改变源扬声器的声音,就像目标扬声器一样。它依赖于来自两种不同语言的非平行训练数据,因此,比单语言语音转换更具挑战性。以前关于交叉语音转换的研究主要专注于具有用于F0转移的线性变换的光谱转换。然而,作为一个重要的韵律因子,F0本质上是等级的,因此它不足以使用线性方法进行转换。我们建议使用连续小波变换(CWT)分解进行F0造型。 CWT提供了一种方法来将信号分解为不同的时间尺度,在不同时间分辨率下解释韵律。我们还建议分别培训两个Consecgan管道,分别用于光谱和韵律映射。通过这种方式,我们消除了对任何两种语言的并行数据和任何对准技术的需求。实验结果表明,我们所提出的频谱 - 浮标 - 加速框架优于主观评价中的频谱 - 加速基准。为了我们的最佳知识,这是跨语法转换韵律的第一次研究。

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