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Dive into the research topics where Ahmed Kamil Hasan Al-Ali is active.

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Featured researches published by Ahmed Kamil Hasan Al-Ali.


IEEE Access | 2017

Enhanced Forensic Speaker Verification Using a Combination of DWT and MFCC Feature Warping in the Presence of Noise and Reverberation Conditions

Ahmed Kamil Hasan Al-Ali; David Dean; Bouchra Senadji; Vinod Chandran; Ganesh R. Naik

Environmental noise and reverberation conditions severely degrade the performance of forensic speaker verification. Robust feature extraction plays an important role in improving forensic speaker verification performance. This paper investigates the effectiveness of combining features, mel frequency cepstral coefficients (MFCCs), and MFCC extracted from the discrete wavelet transform (DWT) of the speech, with and without feature warping for improving modern identity-vector (i-vector)-based speaker verification performance in the presence of noise and reverberation. The performance of i-vector speaker verification was evaluated using different feature extraction techniques: MFCC, feature-warped MFCC, DWT-MFCC, feature-warped DWT-MFCC, a fusion of DWT-MFCC and MFCC features, and fusion feature-warped DWT-MFCC and feature-warped MFCC features. We evaluated the performance of i-vector speaker verification using the Australian Forensic Voice Comparison and QUT-NOISE databases in the presence of noise, reverberation, and noisy and reverberation conditions. Our results indicate that the fusion of feature-warped DWT-MFCC and feature-warped MFCC is superior to other feature extraction techniques in the presence of environmental noise under the majority of signal-to-noise ratios (SNRs), reverberation, and noisy and reverberation conditions. At 0-dB SNR, the performance of the fusion of feature-warped DWT-MFCC and feature-warped MFCC approach achieves a reduction in average equal error rate of 21.33%, 20.00%, and 13.28% over feature-warped MFCC, respectively, in the presence of various types of environmental noises only, reverberation, and noisy and reverberation environments. The approach can be used for improving the performance of forensic speaker verification and it may be utilized for preparing legal evidence in court.


Science & Engineering Faculty | 2016

Comparison of speech enhancement algorithms for forensic applications

Ahmed Kamil Hasan Al-Ali; David Dean; Bouchra Senadji; Vinod Chandran


international conference on signal processing and communication systems | 2017

Speaker verification with multi-run ICA based speech enhancement

Ahmed Kamil Hasan Al-Ali; David Dean; Bouchra Senadji; Mahsa Baktashmotlagh; Vinod Chandran


international conference on signal and image processing applications | 2017

Hybrid DWT and MFCC feature warping for noisy forensic speaker verification in room reverberation

Ahmed Kamil Hasan Al-Ali; Bouchra Senadji; Vinod Chandran


international conference on signal and image processing applications | 2017

Enhanced forensic speaker verification using multi-run ICA in the presence of environmental noise and reverberation conditions

Ahmed Kamil Hasan Al-Ali; Bouchra Senadji; Ganesh R. Naik


World Academy of Science, Engineering and Technology, International Journal of Computer, Electrical, Automation, Control and Information Engineering | 2017

Forensic Speaker Verification in Noisy Environmental by Enhancing the Speech Signal Using ICA Approach

Ahmed Kamil Hasan Al-Ali; Bouchra Senadji; Ganesh R. Naik


World Academy of Science, Engineering and Technology, International Journal of Computer and Information Engineering | 2017

Forensic Speaker Verification in Noisy Environmental by Enhancing the Speech Signal Using Independent Component Analysis (ICA) Approach

Ahmed Kamil Hasan Al-Ali; Bouchra Senadji; Ganesh R. Naik


Science & Engineering Faculty | 2017

Speaker verification with multi-Run ICA based speech enhancement

Ahmed Kamil Hasan Al-Ali; David Dean; Bouchra Senadji; Mahsa Baktashmotlagh; Vinod Chandran


Science & Engineering Faculty | 2017

Enhanced forensic speaker verification using a combination of DWT and MFCC feature warping in the presence of noise and reverberation conditions

Ahmed Kamil Hasan Al-Ali; David Dean; Bouchra Senadji; Vinod Chandran; Ganesh R. Naik

Collaboration


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Bouchra Senadji

Queensland University of Technology

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Vinod Chandran

Queensland University of Technology

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David Dean

Queensland University of Technology

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Mahsa Baktashmotlagh

Queensland University of Technology

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