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Merging segmental and rhythmic features for Automatic Language Identification.

, , , and . ICASSP, page 753-756. IEEE, (2002)

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Distinguishing Monophonies From Polyphonies Using Weibull Bivariate Distributions., , and . IEEE Trans. Speech Audio Process., 19 (6): 1837-1842 (2011)Automatic language identification: an alternative approach to phonetic modelling., and . Signal Process., 80 (7): 1231-1244 (2000)Merging segmental and rhythmic features for Automatic Language Identification., , , and . ICASSP, page 753-756. IEEE, (2002)Char+CV-CTC: Combining Graphemes and Consonant/Vowel Units for CTC-Based ASR Using Multitask Learning., , , and . INTERSPEECH, page 1611-1615. ISCA, (2019)Comparison of two phonetic approaches to language identification., , and . EUROSPEECH, page 399-402. ISCA, (1999)Sound duration modelling and time-variable speaking rate in a speech recognition system., and . EUROSPEECH, page 307-310. ISCA, (1993)Audio visual speech recognition and segmental master slave HMM., , and . AVSP, page 49-52. ISCA, (1997)A new feature vector for HMM-based packet loss concealment., , , and . EUSIPCO, page 2519-2523. IEEE, (2009)A Segmentation-based Tempo Induction Method., , , and . ISMIR, page 27-32. International Society for Music Information Retrieval, (2010)A new statistical approach for the automatic segmentation of continuous speech signals.. IEEE Trans. Acoust. Speech Signal Process., 36 (1): 29-40 (1988)