Title :
Robust microphone placement for source localization from noisy distance measurements
Author :
Taghizadeh, Mohammad J. ; Haghighatshoar, Saeid ; Asaei, Afsaneh ; Garner, Philip N. ; Bourlard, Herve
Author_Institution :
Huawei Eur. Res. Center, Munich, Germany
Abstract :
We propose a novel algorithm to design an optimum array geometry for source localization inside an enclosure. We assume a square-law decay propagation model for the sound acquisition so that the additive noise on the measured source-microphone distances is proportional to the distances regardless of the noise distribution. We formulate the source localization as an instance of the “Generalized Trust Region Subproblem” (GTRS) whose solution gives the location of the source. We show that by suitable selection of the microphone locations, one can tremendously decrease the noise-sensitivity of the resulting solution. In particular, by minimizing the noise-sensitivity of the source location in terms of sensor positions, we find the optimal noise-robust array geometry for the enclosure. Simulation results are provided to show the efficiency of the proposed algorithm.
Keywords :
acoustic noise; acoustic radiators; acoustic signal processing; array signal processing; distance measurement; geometrical acoustics; microphone arrays; GTRS; additive noise; generalized trust region subproblem; noise distribution; noise sensitivity; noisy distance measurement; optimal noise robust array geometry; optimum array geometry design; robust microphone placement; sound acquisition; source localization; square-law decay propagation model; Arrays; Geometry; Microphones; Noise; Noise measurement; Position measurement; Robustness; Generalized Trust Region Subproblem (GTRS); Robust microphone placement; Source localization;
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2015 IEEE International Conference on
Conference_Location :
South Brisbane, QLD
DOI :
10.1109/ICASSP.2015.7178437