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  • Human hearing system allows us to localize the sound source in the space. Superior olivary complex placed in the human brain stem is believed to be responsible for this ability. Physiological model simulating the function of this complex was presented in the paper (Ville Pulkki, Toni Hirvonen, Acta Acoustica united with Acoustica, 2009, vol95. pp. 883 - 899). The model was implemented into Matlab and verified by authors of the presented paper. It is planned to use this model in the system allowing to detect the position of the sound source in the space.
  • Human hearing system allows us to localize the sound source in the space. Superior olivary complex placed in the human brain stem is believed to be responsible for this ability. Physiological model simulating the function of this complex was presented in the paper (Ville Pulkki, Toni Hirvonen, Acta Acoustica united with Acoustica, 2009, vol95. pp. 883 - 899). The model was implemented into Matlab and verified by authors of the presented paper. It is planned to use this model in the system allowing to detect the position of the sound source in the space. (en)
Title
  • Implementation of Binaural Processing Model
  • Implementation of Binaural Processing Model (en)
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  • Implementation of Binaural Processing Model
  • Implementation of Binaural Processing Model (en)
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  • RIV/68407700:21230/12:00195827!RIV13-MSM-21230___
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  • RIV/68407700:21230/12:00195827
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  • binaural hearing; binaural auditory models; interaural level difference, interaural time difference (en)
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  • [8E0B348DD385]
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  • Bouše, Jaroslav
  • Vencovský, Václav
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  • 21230
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