Title :
A robust adaptive speech enhancement system for vehicular applications
Author :
Hu, Jwu-Sheng ; Cheng, Chieh-Cheng ; Liu, Wei-Han ; Yang, Chia-Hsing
Author_Institution :
Dept. of Electr. Eng. & Control Eng., Nat. Chiao Tung Univ., Hsinchu
Abstract :
This work proposes and implements a novel and robust adaptive speech enhancement system, which contains both time domain and frequency domain beamformers using Hinfin filtering approach to provide a clean and undisturbed speech waveform and improve the speech recognition rate in vehicle environments. A microphone array data acquisition hardware is also designed and implemented for the proposed speech enhancement system. Mutually matched microphones are needed for traditional multidimensional noise reduction methods, but this requirement is not practical for consumer applications from the cost standpoint. To overcome this issue, the proposed system adapts the mismatch dynamics to maintain the theoretical performance allowing unmatched microphones to be used in an array. Furthermore, to achieve a high speech recognition performance, the speech recognizer is usually required to be retrained for different vehicle environments due to different noise characteristics and channel effects. The proposed system using the Hinfin filtering approach, which makes no assumptions about noise and disturbance, is robust to the modeling error in a channel recovery process. Consequently, the real vehicular experimental results show that the proposed frequency domain beamformer provides a satisfactory speech recognition performance without the need to retrain the speech recognizer
Keywords :
data acquisition; filtering theory; microphone arrays; multidimensional signal processing; speech enhancement; speech recognition; vehicles; Hinfin filtering approach; channel recovery process; frequency domain beamformers; microphone array data acquisition hardware; multidimensional noise reduction methods; robust adaptive speech enhancement; speech recognition; time domain beamformers; undisturbed speech waveform; vehicular applications; Adaptive filters; Adaptive systems; Filtering; Frequency domain analysis; Microphone arrays; Robustness; Speech enhancement; Speech recognition; Vehicles; Working environment noise;
Journal_Title :
Consumer Electronics, IEEE Transactions on
DOI :
10.1109/TCE.2006.1706509