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ProZed: A speech prosody editor for linguists, using analysis-by-synthesis.
In: Speech Prosody in Speech Synthesis. : Modeling and generation of prosody for high quality and flexible speech synthesis. ; https://hal.archives-ouvertes.fr/hal-01480821 ; Keikichi Hirose And Jianhua Tao. Speech Prosody in Speech Synthesis. : Modeling and generation of prosody for high quality and flexible speech synthesis., Springer Verlag, pp.3-17, 2015, Prosody, Phonology and Phonetics , 978-3-662-45257-8 (2015)
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2
One-to-many voice conversion based on tensor representation of speaker space
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2011/INTERSPEECH_p653-656_t2011-8.pdf (2011)
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3
Dialect-based speaker classification using speaker invariant dialect features
In: http://www.gavo.t.u-tokyo.ac.jp/%7Emine/paper/PDF/2010/ISCSLP_p171-176_t2010-12.pdf (2010)
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4
Pronunciation Proficiency Estimation Based on Multilayer Regression Analysis Using Speakerindependent Structural Features
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2010/L2WS_O2-03_t2010-9.pdf (2010)
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5
Structural analysis of dialects, sub-dialects, and sub-sub-dialects
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2009/INTERSPEECH_p2219-2222_t2009-9.pdf (2009)
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6
Improved Structure-based Automatic Estimation of Pronunciation Proficiency
In: http://www.eee.bham.ac.uk/SLaTE2009/papers/SLaTE2009-21-v2.pdf (2009)
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7
Optimal event search using a structural cost function –improvement of structure to speech conversion
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2009/INTERSPEECH_p2047-2050_t2009-9.pdf (2009)
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8
Automatic recognition of connected vowels only using speaker-invariant representation of speech dynamics
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2007/INTERSPEECH_p890-893_t2007-8.pdf (2007)
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9
Para-linguistic information represented as distortion of the acoustic universal structure in speech
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2006/ICASSP_p261-264_v1_t2006-5.pdf (2006)
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10
Structural representation of the non-native pronunciations
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2005/INTERSPEECH_p165-168_t2005-9.pdf (2005)
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11
Filled pauses as cues to the complexity of following phrases
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2005/INTERSPEECH_p37-40_t2005-9.pdf (2005)
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12
Japanese vowel recognition using external structure of speech
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2005/ASRU_p203-208_t2005-11.pdf (2005)
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13
Use of prosodic features for speech recognition
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2004/ICSLP_p1445-1448_t2004-10.pdf (2004)
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14
Analysis of F0 contours of Cantonese utterances based on the commandresponse model
In: http://mirlab.org/conference_papers/International_Conference/ICSLP+2004/contents/TuC_pdf/TuC201p/TuC201p.14_p1127.pdf (2004)
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15
Tone name in Middle Chinese system
In: http://isca-speech.org/archive_open/archive_papers/ssw5/ssw5_227.pdf (2004)
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16
Corpus-based synthesis of fundamental frequency contours of Japanese using automatically-generated prosodic corpus and generation process model
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2004/SSW_various-styles_t2004-6.pdf (2003)
Abstract: A corpus-based method of generating fundamental frequency (F0) contours of various speaking styles from text was developed. Instead of directly predicting F0 values, the method predicts command values of the F0 contour generation process model. Because of the model constraint, the resulting F0 contour keeps certain naturalness even when the prediction is done incorrectly. The method includes a scheme of automatic extraction of the model commands, which is necessary to prepare the training corpuses for various speaking styles. By introducing constraints on phrase command locations, a better extraction was realized, led to a better performance of the method. Speech synthesis was conducted using HMM speech synthesizer for calm speech and three types of emotional speech. The perceptual experiment showed the designated emotions could be well conveyed with the F0 contours generated by the developed method.
URL: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2004/SSW_various-styles_t2004-6.pdf
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.639.4912
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17
Corpus-based synthesis of fundamental frequency contours of Japanese using automatically-generated prosodic corpus and generation process model
In: http://isca-speech.org/archive_open/archive_papers/ssw5/ssw5_161.pdf (2003)
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18
Automatic estimation of accentual attribute values of words for accent sandhi rules of Japanese text -to-speech conversion
In: http://www.gavo.t.u-tokyo.ac.jp/~mine/paper/PDF/2002/SSW_accent-attribute_t2002-9.pdf (2003)
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19
Data-Driven Synthesis of Fundamental Frequency Contours for TTS Systems Based on a Generation Process Model
In: http://www.lpl.univ-aix.fr/sp2002/pdf/hirose-minematsu-eto.pdf (2002)
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20
N-gram Language Modeling of Japanese Using Prosodic Boundaries
In: http://www.lpl.univ-aix.fr/sp2002/pdf/hirose-minematsu-terao.pdf (2002)
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