IIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS
One way to increase accessibility in media is through the provision of closed captions. Closed captions can be displayed in real time with speech recognition based on acoustic signals, however, the quality of acoustic signals is influenced by the speaker and the surroundin...
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id-itb.:563522021-06-22T08:10:07ZIIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS Kostoglidis, Zoei Indonesia Final Project accessibility, facial electromyography, public speaker INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/56352 One way to increase accessibility in media is through the provision of closed captions. Closed captions can be displayed in real time with speech recognition based on acoustic signals, however, the quality of acoustic signals is influenced by the speaker and the surrounding environment, so it has its own limitations. The "how" (expression) and"what" (speech) aspects conveyed by the speaker are also important in communication. The acoustic limitations and aspects of communication can be handled with electromyography technology, which is a technology that detects electrical energy in musclesandprocessesthe datathrough with acomputer. This technologyis utilized in this research to design a devicewhich can be used to improve accessibility in media. text |
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One way to increase accessibility in media is through the provision of closed captions. Closed captions can be displayed in real time with speech recognition based on acoustic signals, however, the quality of acoustic signals is influenced by the speaker and the surrounding environment, so it has its own limitations. The "how" (expression) and"what" (speech) aspects conveyed by the speaker are also important in communication. The acoustic limitations and aspects of communication can be handled with electromyography technology, which is a technology that detects electrical energy in musclesandprocessesthe datathrough with acomputer. This technologyis utilized in this research to design a devicewhich can be used to improve accessibility in media. |
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Final Project |
author |
Kostoglidis, Zoei |
spellingShingle |
Kostoglidis, Zoei IIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS |
author_facet |
Kostoglidis, Zoei |
author_sort |
Kostoglidis, Zoei |
title |
IIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS |
title_short |
IIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS |
title_full |
IIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS |
title_fullStr |
IIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS |
title_full_unstemmed |
IIABSTRACTDESIGNOF A SPEECH & EXPRESSION RECOGNITION DEVICE USING FACIAL ELECTROMYOGRAPHY (FEMG)TECHNOLOGYFOR PUBLIC SPEAKERS |
title_sort |
iiabstractdesignof a speech & expression recognition device using facial electromyography (femg)technologyfor public speakers |
url |
https://digilib.itb.ac.id/gdl/view/56352 |
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