Title :
Sound-localization-preserved binaural MMSE STSA estimator with explicit and implicit binaural cues
Author :
Saruwatari, H. ; Wakisaka, R. ; Shikano, K. ; Mustiere, F. ; Thibault, L. ; Najaf-Zadeh, H. ; Bouchard, M.
Author_Institution :
Nara Inst. of Sci. & Technol., Nara, Japan
Abstract :
In this paper, we address some variations of the source-localization-preserved MMSE STSA estimator used for binaural hearing aids. In our previous work, the sound-localization-preserved MMSE STSA estimator with ICA-based noise estimation has been proposed. However, this conventional method is based on an approximated optimization criterion and does not use binaural cues, resulting in poor noise reduction performance. To solve this problem, we propose two methods: a multichannel MMSE STSA estimator with explicit binaural cues, and a sound-localization-preserved generalized MMSE STSA estimator with different speech priors for the left and right channels as implicit bin-aural cues. From the results of objective and subjective evaluation, we confirm that the noise reduction performance is improved using the proposed method.
Keywords :
acoustic noise; acoustic radiators; audio signal processing; hearing aids; mean square error methods; ICA-based noise estimation; approximated optimization criterion; binaural hearing aids; explicit binaural cues; implicit binaural cues; multichannel MMSE STSA estimator; noise reduction performance; objective evaluation; sound-localization-preserved binaural MMSE STSA estimator; sound-localization-preserved generalized MMSE STSA estimator; source-localization-preserved MMSE STSA estimator; subjective evaluation; Channel estimation; Estimation; Noise reduction; Shape; Signal to noise ratio; Speech; Hearing aids; ICA; MMSE STSA estimator; generalized gamma distribution; localization;
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2012 Proceedings of the 20th European
Print_ISBN :
978-1-4673-1068-0