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Comparison between the Macro and Micro Mechanical Model using Values of the Human Cochlea vs. Fluid Mechanical Model for Automatic Speech Recognition.

, and . Res. Comput. Sci., (2015)

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Geo-referenced flight path estimation based on spatio-temporal information extracted from aircraft take-off noise., , , and . Digit. Signal Process., (2014)Reconocimiento de Voz en Español Mediante Sílabas., and . Polibits, (2006)Automatic Phonetic Labeling at Word Level Using the Dynamics of Changing Codebook Vectors., and . Computación y Sistemas, (2020)Speech Recognition Using Energy, MFCCs and Rho Parameters to Classify Syllables in the Spanish Language., , , and . MICAI, volume 4293 of Lecture Notes in Computer Science, page 1057-1066. Springer, (2006)Automatic Phoneme Border Detection to Improve Speech Recognition., , and . MICAI (1), volume 9413 of Lecture Notes in Computer Science, page 127-135. Springer, (2015)Using Values of the Human Cochlea in the Macro and Micro Mechanical Model for Automatic Speech Recognition., and . MICAI (2), volume 8857 of Lecture Notes in Computer Science, page 242-251. Springer, (2014)Selective Conditional Enhancement of Digital Color Halftone Images., , , and . Computación y Sistemas, (2007)Reconocimiento automático de voz emotiva con memorias asociativas Alfa-Beta SVM., , and . Polibits, (2011)Comparación de clasificadores para el reconocimiento de notas musicales., , and . Res. Comput. Sci., (2016)Speech Recognition Using Energy Parameters to Classify Syllables in the Spanish Language., , , and . CIARP, volume 3773 of Lecture Notes in Computer Science, page 161-170. Springer, (2005)