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Implicit excitation source features for robust language identification.

, , and . I. J. Speech Technology, 18 (3): 459-477 (2015)

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Development of phonetic engine for Indian languages: Bengali and Oriya., , and . O-COCOSDA/CASLRE, page 1-6. IEEE, (2013)Modelling Glottal Flow Derivative Signal for Detection of Replay Speech Samples., , and . NCC, page 1-5. IEEE, (2019)Usefulness of linear prediction residual signal for development of replay attacks detection system., , and . NCC, page 1-4. IEEE, (2017)Parametric representation of excitation source information for language identification., , and . Comput. Speech Lang., (2017)Subsegmental, segmental and suprasegmental processing of linear prediction residual for speaker information., and . I. J. Speech Technology, 14 (1): 49-64 (2011)Implicit excitation source features for robust language identification., , and . I. J. Speech Technology, 18 (3): 459-477 (2015)Language identification using Hilbert envelope and phase information of linear prediction residual., , and . O-COCOSDA/CASLRE, page 1-6. IEEE, (2013)Phonetic and Prosodically Rich Transcribed speech corpus in Indian languages: Bengali and Odia., , and . O-COCOSDA/CASLRE, page 1-5. IEEE, (2013)Processing linear prediction residual signal to counter replay attacks., , and . SPCOM, page 95-99. IEEE, (2018)Usefulness of glottal excitation source information for audio-visual speech recognition system., and . Int. J. Speech Technol., 26 (4): 933-945 (December 2023)