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Automatic recognition of Japanese vowel length accounting for speaking rate and motivated by perception analysis.

, , , and . Speech Commun., (2015)

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Automatic recognition of Japanese vowel length accounting for speaking rate and motivated by perception analysis., , , and . Speech Commun., (2015)Acoustic features of Japanese words spoken by Japanese natives and non-natives., , and . ICPhS, University of Glasgow, (2015)Developmental change in English stress manifestation by Japanese speakers., and . ICPhS, University of Glasgow, (2015)A study of the production of unstressed vowels by Japanese speakers of English using the J-AESOP corpus., , , , and . O-COCOSDA/CASLRE, page 96-100. IEEE, (2015)Studying L2 suprasegmental features in asian Englishes: a position paper., , , , and . INTERSPEECH, page 1715-1718. ISCA, (2009)Mechanisms of vowel devoicing in Japanese.. ICSLP, page 61-64. ISCA, (1994)Development of Japanese read-word database for non-native speakers of Japanese., , and . O-COCOSDA, page 1-6. IEEE, (2014)Cyborg Speech: Deep Multilingual Speech Synthesis for Generating Segmental Foreign Accent with Natural Prosody., , , , and . ICASSP, page 4799-4803. IEEE, (2018)Analysis of L2 English speech corpus by automatic phoneme alignment., and . SLaTE, page 141-144. ISCA, (2011)Effect of Pitch on Japanese Word-initial Stop Production by Korean Speakers., and . ICPhS, page 1134-1137. (2011)