Deep learning-based speaking rate-dependent hierarchical prosodie model for Mandarin TTS

Yen-Ting Lin, Chen-Yu Chiang
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Abstract

Speaking Rate-dependent Hierarchical Prosodie Model (SR-HPM) is a syllable-based statistical prosodie model and has been successfully served as a prosody generation model in a speaking rate-controlled text-to-speech system for Mandarin, and two Chinese dialects: Taiwan Min and Si-Xian Hakka. Excited by the success of utilizing deep learning (DL) techniques in parametric speech synthesis based on the HMM-based speech synthesis system, this study aims to improve the performance of the SR-HPM in prosody generation by replacing the conventional cascaded statistical sub-models with DL-based models, i.e. the DL-based SR-HPM. Each of the sub-model is first independently realized by a specially designed DL-based model based on its input-output characteristics. Then, all sub-models are cascaded and unified as one deep neural structure with their parameters being obtained by an end-to-end (linguistic feature-to-prosodic acoustic feature) optimization manner. The subjective and objective tests show that the DL-based SR-HPM performs better than the conventional statistical SR-HPM in prosody generation.
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基于深度学习的汉语TTS语速分层韵律模型
基于语速的分层韵律模型(SR-HPM)是一种基于音节的韵律统计模型,已成功应用于普通话、台湾闽话和泗县客家方言的语速控制文本-语音系统中。基于深度学习技术在基于hmm的参数化语音合成系统中的成功应用,本研究旨在用基于DL的模型(即基于DL的SR-HPM)取代传统的级联统计子模型,从而提高SR-HPM在韵律生成方面的性能。每个子模型首先由一个专门设计的基于dl的模型根据其输入输出特性独立实现。然后,将所有子模型级联统一为一个深度神经结构,并通过端到端(语言特征到韵律声学特征)优化方式获得其参数。主观和客观测试表明,基于dl的SR-HPM在韵律生成方面优于传统的统计SR-HPM。
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