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The Institute of Theoretical and Applied Mechanics
20
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11.
(75)
Original version of the author's contribution as presented on CD, . :
PDF
Voice recognition in robot control -teaching stand
Nowicki, K.
;
Peszyński, K.
Programming robot PLC controller through voice recognition system has been presented. The purpose of this project is a development of a robot control voice protocol allow [...]
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12.
(76)
Original version of the author's contribution as presented on book, page 471. :
PDF
ADDED MASS AND DAMPING OF INCOMPRESSIBLE VISCOUS FLUID
Pohanka, L.
;
Malenovský, E.
Approach for determination of the dynamic behavior of an elastic body submerged in fluid is presented in this contribution. Method is based on independent solution of the [...]
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13.
(78)
Original version of the author's contribution as presented on CD, . :
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FLUID-STRUCTURE INTERACTION IN LOUDSPEAKER SYSTEM
Dániel, V.
;
Košúth, S.
At the loudspeaker system designing, especially for bass zone, many things have be taken to account. First it is loudspeaker, secondary loudspeaker’s baffle board. For [...]
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14.
(78)
Original version of the author's contribution as presented on CD, . :
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THE POSSIBILITIES OF TUNING AND OPTIMISATION OF ACOUSTIC RESONANCE PROPERTIES OF THE HUMAN VOCAL TRACT
Radolf, V.
;
Vampola, T.
The paper deals with optimization process finding such geometrical form of acoustical cavities of the human supraglottal spaces which leads to excitation of predefined ac [...]
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15.
(78)
Original version of the author's contribution as presented on CD, . :
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INTERACTION PROBLEM FOR A BLOOD VESSEL
Shakirova, D.
;
Křen, J.
Blood – aortic wall interaction was investigated in a current work using the uncoupled method. The method is based on alternating, relatively independent solutions of t [...]
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16.
(78)
Original version of the author's contribution as presented on book, page 507. :
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NUMERICAL SIMULATION OF ACOUSTIC CHARACTERISTICS OF PROFESSIONAL VOICE BASED ON MRI AND ACOUSTIC MEASUREMENTS
Radolf, V.
;
Horáček, J.
Inverse method was used for numerical simulation of acoustic characteristics of a professional musical actor before and after vocal exercises. The geometrical data for a [...]
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17.
(79)
Original version of the author's contribution as presented on CD, . :
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Influence of geometric configuration of human vocal tract on phonation of Czech vowels
Vampola, T.
;
Horáček, J.
1D and 3D finite element models of supraglottal tract designed for Czech vowel / a / are analyzed. Performed modal analysis is focused on investigation of the influence o [...]
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18.
(79)
Original version of the author's contribution as presented on CD, . :
PDF
THE INFLUENCE OF THE VELOCITY GRADIENT ON MORFOLOGICAL PROPERTIES OF AGGREGATES
Pivokonský, M.
;
Chára, Z.
This paper summarises the preliminary results concerning an influence of the agitation conditions on the aggregation processes. The properties of formed aggregates affect [...]
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19.
(80)
Original version of the author's contribution as presented on book, page 391. :
PDF
ANALYSIS OF INFLUENCE OF VOCAL FOLD –VOCAL TRACT MODELS CONNECTION BY USING FEM
Matug, M.
;
Řehák, K.
The Source-filter theory does not take into account many important circumstances for generating of vowels, e.g. the effects of source on filter. One of these effects is i [...]
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20.
(81)
Original version of the author's contribution as presented on CD, BIO. :
PDF
Numerical simulation of self-oscillations of human vocal folds based on aeroelastic theory
Horáček, J.
;
Šidlof, P.
Linear two degrees of freedom aero-elastic system for modelling vibrations of human vocal folds was originally developed by which the physiological conditions for so-call [...]
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21.
(81)
Original version of the author's contribution as presented on CD, . :
PDF
COMPUTER MODELLING OF RELATIONS BETWEEN GLOTTAL AREA VARIATION AND SOUND PRESSURE LEVEL AT THE VIBRATING VOCAL FOLDS
Horáček, J.
;
Šidlof, P.
The radiated sound pressure level (SPL) during phonation is known to be mainly regulated by lung pressure and glottal resistance (adduction), at the glottal level. Few re [...]
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22.
(82)
Original version of the author's contribution as presented on CD, . :
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MODELLING OF THE VIBRATION PROPERTIES OF THE HUMAN VOCAL FOLDS
Vampola, T.
;
Klepáček, I.
A 3D finite element model of the human larynx including the vocal folds was developed. The model enables to take into account phonation position (tension and adduction) o [...]
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23.
(83)
Original version of the author's contribution as presented on CD, paper. :
PDF
The interaction solution between air flow and vocal cords by means of finite element method
Hostička, P.
Abstrakt:
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24.
(83)
Original version of the author's contribution as presented on CD, . :
PDF
Transfer matrix method for the human vocal fold modelling
Radolf, V.
;
Vampola, T.
The model of the human vocal fold is created with transfer matrix method. The model is made from 32 cylindric or conic elements for Czech vowel /u/. The calculation is ca [...]
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25.
(83)
Original version of the author's contribution as presented on CD, BIO. :
PDF
Finite element model of male vocal tract considering clefting and interaction between hard palate and acoustic spaces
Dedouch, K.
;
Vampola, T.
Results of a voice numerical simulation using finite element (FE) model of acoustic spaces corresponding to the human vocal tract for English vowel / a / are presented. T [...]
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26.
(83)
Original version of the author's contribution as presented on CD, BIO. :
PDF
Modelling of production of Czech formants by vocal folds model
Přikryl, K.
;
Mišun, V.
Acoustic speech output in humans is commonly considered to results from a combination of a source of sound energy (e.g. the larynx) modulated by a transfer (filter) funct [...]
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27.
(85)
Original version of the author's contribution as presented on CD, paper. :
PDF
Measurement of the vocal-fold vibration
Horáček, J.
;
Klepáček, I.
Abstrakt:
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28.
(88)
Original version of the author's contribution as presented on CD, BIO. :
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Fe model of the human vocall folds considering fluid structure interaction
Švancara, P.
;
Hrůza, V.
The study presents three-dimensional finite element (FE) model of flow induced oscillations of the human vocal folds in interaction with acoustic processes in the simplif [...]
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29.
(89)
Original version of the author's contribution as presented on CD, paper. :
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Interaction of viscous incompressible fluid and elastic vocal folds
Damašek, A.
;
Burda, P.
Abstrakt:
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30.
(100)
Original version of the author's contribution as presented on CD, . :
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Modeling of vocal folds function in 2D
Hrůza, V.
During fonation the vocal folds are excited by air flow. This air is portioned by vocal folds into separated air bubbles. These are the cause of the source voice. It is o [...]
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