A study of data normalization measured by an electro-magnetic articulograph
We investigated the normalization of the data measured using an electro-magnetic articulograph (EMA). The data normalization was needed because the size of the articulator of each subject is different from the sex and/or body size. Moreover, tongue movement range depends upon the speaking styles, cl...
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Published in | Proceedings of Meetings on Acoustics Vol. 19; no. 1 |
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Main Authors | , |
Format | Conference Proceeding |
Language | English |
Published |
02.06.2013
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Online Access | Get full text |
ISSN | 1939-800X |
DOI | 10.1121/1.4799572 |
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Abstract | We investigated the normalization of the data measured using an electro-magnetic articulograph (EMA). The data normalization was needed because the size of the articulator of each subject is different from the sex and/or body size. Moreover, tongue movement range depends upon the speaking styles, clear or unclear. Our experiments were as follows: tongue tip movements during articulation of non-native consonant clusters were measured. Speakers were 2 Japanese and 2 Germans. Speech samples were 4 nonsense words, bnaht, pnaht, gnaht, knaht. Tongue tip displacement D (mm) and moving time T (ms) between first and second consonant in consonant clusters were measured. Dx (X component of D) was normalized by the difference between maximum value of X (Xmax) and minimum value of X (Xmin) in each utterance, i.e. Dnx=Dx/(Xmax-Xmin). Also Dy (Y component of D) was normalized, i.e. Dny=Dy/(Ymax-Ymin). Hence, Dn (normalized D) was Dn=(Dnx
2+Dny
2)1/2. T was normalized by word length L (ms), i.e. Tn=T/L. Before the normalization, the measured data was localized by each speaker on the T-D plane, while the normalized data was not localized on the Tn-Dn plane. Accordingly, this results suggested that this simple normalization method would be effective in this experiment. |
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AbstractList | We investigated the normalization of the data measured using an electro-magnetic articulograph (EMA). The data normalization was needed because the size of the articulator of each subject is different from the sex and/or body size. Moreover, tongue movement range depends upon the speaking styles, clear or unclear. Our experiments were as follows: tongue tip movements during articulation of non-native consonant clusters were measured. Speakers were 2 Japanese and 2 Germans. Speech samples were 4 nonsense words, bnaht, pnaht, gnaht, knaht. Tongue tip displacement D (mm) and moving time T (ms) between first and second consonant in consonant clusters were measured. Dx (X component of D) was normalized by the difference between maximum value of X (Xmax) and minimum value of X (Xmin) in each utterance, i.e. Dnx=Dx/(Xmax-Xmin). Also Dy (Y component of D) was normalized, i.e. Dny=Dy/(Ymax-Ymin). Hence, Dn (normalized D) was Dn=(Dnx
2+Dny
2)1/2. T was normalized by word length L (ms), i.e. Tn=T/L. Before the normalization, the measured data was localized by each speaker on the T-D plane, while the normalized data was not localized on the Tn-Dn plane. Accordingly, this results suggested that this simple normalization method would be effective in this experiment. |
Author | Funatsu, Seiya Fujimoto, Masako |
Author_xml | – sequence: 1 givenname: Seiya surname: Funatsu fullname: Funatsu, Seiya organization: Science Information Center, Prefectural University of Hiroshima, 1-1-71 Ujinahigashi Minami-ku, Hiroshima, Hiroshima 734-8558 Japan – sequence: 2 givenname: Masako surname: Fujimoto fullname: Fujimoto, Masako organization: The National Institute for Japanese Language and Linguistics, 10-2 Midori-machi, Tachikawa, Tokyo 190-8561 Japan |
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Snippet | We investigated the normalization of the data measured using an electro-magnetic articulograph (EMA). The data normalization was needed because the size of the... |
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