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Robust Binaural Localization of a Target Sound Source by Combining Spectral Source Models and Deep Neural Networks.

, , and . CoRR, (2019)

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Modelling the perceptual separation of concurrent vowels with a network of neural oscillators., and . ICNN, page 569-574. IEEE, (1997)Instrument recognition in accompanied sonatas and concertos., and . ICASSP (4), page 217-220. IEEE, (2004)Speech Separation Based on The Statistics of Binaural Auditory Features., , and . ICASSP (5), page 949-952. IEEE, (2006)Separation of speech from interfering sounds based on oscillatory correlation., and . IEEE Trans. Neural Networks, 10 (3): 684-697 (1999)Exploiting Deep Neural Networks and Head Movements for Robust Binaural Localisation of Multiple Sources in Reverberant Environments., , and . CoRR, (2019)Deep Learning Features for Robust Detection of Acoustic Events in Sleep-Disordered Breathing., , , , and . CoRR, (2019)Obstructive sleep apnea screening with breathing sounds and respiratory effort: a multimodal deep learning approach., , , and . INTERSPEECH, page 5451-5455. ISCA, (2023)Robust Binaural Localization of a Target Sound Source by Combining Spectral Source Models and Deep Neural Networks., , and . CoRR, (2019)A Neural Oscillator Model of Auditory Attention., and . ICANN, volume 2130 of Lecture Notes in Computer Science, page 1163-1170. Springer, (2001)Recognition of Reverberant Speech using Full Cepstral Features and Spectral Missing Data., , and . ICASSP (1), page 289-292. IEEE, (2006)