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Comparison of native and non-native evaluations of the naturalness of Japanesewords with prosody modified through voice morphing.

, , , , and . SLaTE, page 145-148. ISCA, (2011)

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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)Zenkai - Framework For Exploring Beyond Backpropagation.. CoRR, (2023)Automatic recognition of Japanese vowel length accounting for speaking rate and motivated by perception analysis., , , and . Speech Commun., (2015)Rule-based method for pitch level classification for a Japanese pitch accent CALL system., , and . SLaTE, page 45-48. ISCA, (2011)Comparison of native and non-native evaluations of the naturalness of Japanesewords with prosody modified through voice morphing., , , , and . SLaTE, page 145-148. ISCA, (2011)Japanese lexical accent recognition for a CALL system by deriving classification equations with perceptual experiments., , and . Speech Commun., 55 (10): 1064-1080 (2013)Vowel epenthesis in Japanese speakers' L2 English., , , , and . ICPhS, University of Glasgow, (2015)Automatic recognition of vowel length in Japanese for a CALL system motivated by perceptual experiments., , and . SLaTE, page 178-183. ISCA, (2013)Pitch Pattern Recognition of Isolated Words for the Development of a Japanese Language Call System., , and . ESSV, volume 58 of Studientexte zur Sprachkommunikation, page 304-313. TUDpress, Dresden, (2010)