Speech: a dynamic process

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Hauptverfasser: Carré, René (VerfasserIn), Divenyi, Pierre (VerfasserIn), Mrayati, Mohamad (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Berlin ; Boston de Gruyter [2017]
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Datensatz im Suchindex

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adam_text Contents Preface — V Introduction----3 1 Speech: results, theories, models--10 1.1 Background-----10 1.2 Speech production----15 1.2.1 Speech production theories----15 1.2.2 Speech production data----19 1.2.3 Speech production modeling----23 1.3 Speech perception----26 1.3.1 A short history of the study of speech perception-26 1.3.2 Models of speech perception---30 1.4 Conclusions----33 2 Perturbation and sensitivity functions — 35 2.1 Introduction---35 2.2 Sensitivity functions for process modeling---35 2.3 Resonances and energy in an acoustic tube----36 2.4 From perturbation theory to sensitivity function--37 2.5 Approximating the tube by N sections---44 2.6 Example on a relation between A(x), SF,(x), and F,·-45 2.7 An example of a non-uniform tube---46 2.8 Conclusions----48 3 An efficient acoustic production system--49 3.1 Algorithm for efficient change of tube shape-51 3.2 Computational results---52 3.2.1 Exploring the Fi-F2 acoustic plane-52 3.2.2 Behavior of an initially uniform tube constrained only by area limits---58 3.2.3 Toward a more realistic sound-producingtube----66 3.2.4 Starting from a non-uniform tube---72 3.3 Conclusions----72 VIII Contents 4 4.1 4.2 4.2.1 4.2.2 4.2.3 4.2.4 4.3 4.3.1 4.3.2 4.3.3 4.4 4.5 5 5.1 5.2 5.3 5.4 5.4.1 5.4.2 5.5 6 6.1 6.2 6.3 6.4 7 7.1 7.1.1 7.1.2 7.1.3 7.2 7.2.1 7.2.2 7.3 The Distinctive Region Model (DRM)----73 Introduction----73 The model-----74 The two-region model for the closed open case----75 The four-region model for the closed-open case---77 The eight-region-model for the closed open case-----79 The closed-closed tube model------88 Use of the model to discover primitive trajectories-90 The model with simplified controls----90 From a closed-open to a closed-closed model-----92 Deduction of seven primitive trajectories--93 Efficiency and optimality of the model--96 Summary and conclusions--------97 Speech production and the model-------100 The articulatory level--104 The DRM and vowel production------107 Vowel dynamics------108 Consonant production and the model------112 CV syllabic co-production and the model----112 VCV production------116 Discussion and conclusions-----117 Vowel systems as predicted by the model-----120 Problems of vowel system predictions----120 Prediction of vowel systems from DRM trajectories---122 The phonology-phonetics relation------126 Conclusions-----127 Speech dynamics and the model------128 Characteristics of speech gestures as dynamic phonological primitives----133 The issue of duration range----133 The issue of kinetics---136 The issue of gesture synchrony----137 Formant transition rates---142 Vowel-to-vowel transition dynamics----142 Consonant-to-neutral vowel transition rates---148 Discussion and conclusions-----153 Contents ----- IX 8 Speech perception viewed from the model-----156 8.1 Properties of the auditory system, in a nutshell 156 8.2 Auditory pattern recognition--162 8.3 Multiple auditory objects: information and streams--164 8.4 The dynamics of the auditory system-----167 8.5 Is auditory perception optimal for speech?-175 9 Epistemological considerations----182 9.1 The integrated approach---183 9.1.1 Deductive method------183 9.1.2 Iterative process--184 9.1.3 Modeling----185 9.2 Findings----186 9.2.1 A dynamic approach to speech-----186 9.2.2 Coding and acoustic phonology----187 9.2.3 The importance of time----189 9.2.4 Complexity-----190 9.3 Conclusions----190 10 Conclusions and perspectives----192 10.1 Summary of findings and conclusions-----192 10.1.1 Deductive-iterative modeling process----192 10.1.2 Efficiency and optimality-192 10.1.3 Acoustic phonology----193 10.1.4 Dynamic process----194 10.1.5 Explanatory process---195 10.2 Perspectives---195 10.2.1 Extension of the model to speech sounds other than oral vowels and plosive consonants---195 10.2.2 Co-production-deconvolution of gestures----197 10.2.3 Transition slopes and time normalization---198 10.2.4 From iterative to evolutionary process?-198 10.2.5 Practical applications--201 Bibliography-----205 Index of terms---224 Author Index----227
any_adam_object 1
author Carré, René
Divenyi, Pierre
Mrayati, Mohamad
author_GND (DE-588)1131733029
(DE-588)1131733282
author_facet Carré, René
Divenyi, Pierre
Mrayati, Mohamad
author_role aut
aut
aut
author_sort Carré, René
author_variant r c rc
p d pd
m m mm
building Verbundindex
bvnumber BV044315134
classification_rvk ER 990
ctrlnum (OCoLC)986989411
(DE-599)DNB1076281095
dewey-full 414.0113
620.25
dewey-hundreds 400 - Language
600 - Technology (Applied sciences)
dewey-ones 414 - Phonology & phonetics
620 - Engineering and allied operations
dewey-raw 414.0113
620.25
dewey-search 414.0113
620.25
dewey-sort 3414.0113
dewey-tens 410 - Linguistics
620 - Engineering and allied operations
discipline Maschinenbau / Maschinenwesen
Sprachwissenschaft
Informatik
Literaturwissenschaft
format Book
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spelling Carré, René Verfasser (DE-588)1131733029 aut
Speech: a dynamic process René Carré, Pierre Divenyi, Mohamad Mrayati
Berlin ; Boston de Gruyter [2017]
IX, 232 Seiten Illustrationen 24 cm
txt rdacontent
n rdamedia
nc rdacarrier
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Akustischer Resonator (DE-588)4120857-2 s
Hohlraumresonator (DE-588)4160446-5 s
DE-604
Divenyi, Pierre Verfasser aut
Mrayati, Mohamad Verfasser (DE-588)1131733282 aut
Walter de Gruyter Inc. (DE-588)2036938-4 pbl
Erscheint auch als Online-Ausgabe, PDF 978-1-5015-0201-9
Erscheint auch als Online-Ausgabe, EPUB 978-1-5015-0205-7
B:DE-101 application/pdf http://d-nb.info/1076281095/04 Inhaltsverzeichnis
Digitalisierung UB Passau - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029718701&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
spellingShingle Carré, René
Divenyi, Pierre
Mrayati, Mohamad
Speech: a dynamic process
Computersimulation (DE-588)4148259-1 gnd
Hohlraumresonator (DE-588)4160446-5 gnd
Akustischer Resonator (DE-588)4120857-2 gnd
Akustische Phonetik (DE-588)4141782-3 gnd
Sprachproduktion (DE-588)4182529-9 gnd
subject_GND (DE-588)4148259-1
(DE-588)4160446-5
(DE-588)4120857-2
(DE-588)4141782-3
(DE-588)4182529-9
title Speech: a dynamic process
title_auth Speech: a dynamic process
title_exact_search Speech: a dynamic process
title_full Speech: a dynamic process René Carré, Pierre Divenyi, Mohamad Mrayati
title_fullStr Speech: a dynamic process René Carré, Pierre Divenyi, Mohamad Mrayati
title_full_unstemmed Speech: a dynamic process René Carré, Pierre Divenyi, Mohamad Mrayati
title_short Speech: a dynamic process
title_sort speech a dynamic process
topic Computersimulation (DE-588)4148259-1 gnd
Hohlraumresonator (DE-588)4160446-5 gnd
Akustischer Resonator (DE-588)4120857-2 gnd
Akustische Phonetik (DE-588)4141782-3 gnd
Sprachproduktion (DE-588)4182529-9 gnd
topic_facet Computersimulation
Hohlraumresonator
Akustischer Resonator
Akustische Phonetik
Sprachproduktion
url http://d-nb.info/1076281095/04
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