DocumentCode :
2053400
Title :
Worst-case performance optimization for spherical microphone array modal beamformers
Author :
Sun, Haohai ; Yan, Shefeng ; Svensson, U. Peter
Author_Institution :
Dept. of Elec. & Telecommun., Acoust. Res. Center, Trondheim, Norway
fYear :
2011
fDate :
May 30 2011-June 1 2011
Firstpage :
31
Lastpage :
35
Abstract :
The performance of conventional spherical microphone array modal beamformers is known to degrade in the presence of array errors. White noise gain control has been widely used to control the robustness of modal beamformers, but it is not clear how to properly choose the white noise gain parameters based on the level of array errors. In this paper, a worst-case performance optimization approach is formulated for the spherical array minimum-sidelobe modal beamformer to improve its robustness against random errors occurring in practice, thus the optimal performance can be obtained based on the known maximum level of array errors. The robust optimal modal beamforming problem is reformulated as a tractable convex optimization within the spherical harmonics framework. Compared with conventional element-space approaches, the proposed modal beamforming method enjoys lower optimization complexity and higher flexibility in beam steering.
Keywords :
Legendre polynomials; array signal processing; gain control; microphone arrays; optimisation; Legendre polynomials; conventional element-space approach; noise gain control; spherical microphone array modal beamformer; worst-case performance optimization approach; Array signal processing; Harmonic analysis; Manifolds; Microphone arrays; Optimization; Robustness; Spherical microphone array; beamforming; spherical harmonics; worst-case performance optimization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Hands-free Speech Communication and Microphone Arrays (HSCMA), 2011 Joint Workshop on
Conference_Location :
Edinburgh
Print_ISBN :
978-1-4577-0997-5
Type :
conf
DOI :
10.1109/HSCMA.2011.5942405
Filename :
5942405
Link To Document :
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