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Estimation of glottal source waveforms and vocal tract shape for singing voices with wide frequency range.

, and . APSIPA, page 1879-1887. IEEE, (2018)

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Objective Japanese intelligibility prediction for noisy speech signals before and after noise-reduction processing., , and . ChinaSIP, page 352-355. IEEE, (2013)Estimation of glottal source waveforms and vocal tract shapes from speech signals based on ARX-LF model., , and . ISCSLP, page 230-234. IEEE, (2018)Cross-lingual speech emotion recognition system based on a three-layer model for human perception., and . APSIPA, page 1-10. IEEE, (2013)Estimation of glottal source waveforms and vocal tract shape for singing voices with wide frequency range., and . APSIPA, page 1879-1887. IEEE, (2018)Improvement of the restricted temporal decomposition method for line spectral frequency parameters., and . ICASSP, page 265-268. IEEE, (2002)Speaker Individualities in Speech Spectral Envelopes and Fundamental Frequency Contours., and . Speaker Classification (2), volume 4441 of Lecture Notes in Computer Science, page 157-176. Springer, (2007)Toward a Rule-Based Synthesis of Vietnamese Emotional Speech., , and . KSE, volume 326 of Advances in Intelligent Systems and Computing, page 129-142. Springer, (2014)Evaluation of the Lombard effect model on synthesizing Lombard speech in varying noise level environments with limited data., , and . APSIPA, page 133-137. IEEE, (2019)Monaural Singing Voice Separation Using Fusion-Net with Time-Frequency Masking., , , and . APSIPA, page 1239-1243. IEEE, (2019)A noise reduction system based on hybrid noise estimation technique and post-filtering in arbitrary noise environments., and . Speech Commun., 48 (2): 111-126 (2006)