© 2018 IEEE. Broadband beamformers are known to be sensitive not only to mismatches in microphone characteristics but also in the acoustic environment. In this work, we propose a robust broadband beamformer design using weighted least square optimization technique, which takes into account the room reverberation as well as the mismatches in microphone gain and phase characteristics. The robust design procedure optimize the mean performance of the beamformer with the room impulse response estimated using the image source method. Design examples demonstrate performance improvement in terms of significant reduction in error sensitivity for the robust design formulation
The design problem of broadband beamformers is to choose the coefficients of the filters such that t...
Some new techniques for robust beamformer design are presented in this thesis. Firstly, we extend th...
Signals captured by microphone arrays provide spatial diversity that can be exploited by multichanne...
Fixed broadband beamformers using small-sized microphone arrays are known to be highly sensitive to ...
Abstract – This paper extends the design of steerable broadband beamformers by incorporating robustn...
Beamformers are known to be sensitive to errors and mismatches in their array elements. This paper p...
Broadband microphone arrays play an important role for noise reduction in various applications, such...
A new method for the design of robust minimax far-field broadband beamformers with optimized microph...
Conventional wideband beamformers are known highly sensitive to gain and phase errors in microphone ...
This paper extends the design of frequency invariant beamformer by incorporating robustness in the d...
Abstract—A new method for the design of linear-phase robust far-field broadband beamformers using co...
This paper extends the design of steerable broadband beamformers by incorporating robustness in the ...
Abstract—A new method for the design of linear-phase robust far-field broadband beamformers using co...
Broadband beamformers are known to be sensitive to errors and mismatches in their array elements. Th...
Broadband beamforming techniques are of importance in several applications such as microphone arrays...
The design problem of broadband beamformers is to choose the coefficients of the filters such that t...
Some new techniques for robust beamformer design are presented in this thesis. Firstly, we extend th...
Signals captured by microphone arrays provide spatial diversity that can be exploited by multichanne...
Fixed broadband beamformers using small-sized microphone arrays are known to be highly sensitive to ...
Abstract – This paper extends the design of steerable broadband beamformers by incorporating robustn...
Beamformers are known to be sensitive to errors and mismatches in their array elements. This paper p...
Broadband microphone arrays play an important role for noise reduction in various applications, such...
A new method for the design of robust minimax far-field broadband beamformers with optimized microph...
Conventional wideband beamformers are known highly sensitive to gain and phase errors in microphone ...
This paper extends the design of frequency invariant beamformer by incorporating robustness in the d...
Abstract—A new method for the design of linear-phase robust far-field broadband beamformers using co...
This paper extends the design of steerable broadband beamformers by incorporating robustness in the ...
Abstract—A new method for the design of linear-phase robust far-field broadband beamformers using co...
Broadband beamformers are known to be sensitive to errors and mismatches in their array elements. Th...
Broadband beamforming techniques are of importance in several applications such as microphone arrays...
The design problem of broadband beamformers is to choose the coefficients of the filters such that t...
Some new techniques for robust beamformer design are presented in this thesis. Firstly, we extend th...
Signals captured by microphone arrays provide spatial diversity that can be exploited by multichanne...