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Near and Far Field Speech-in-Noise Intelligibility Improvements Based on a Time-Frequency Energy Reallocation Approach.

, , , and . IEEE ACM Trans. Audio Speech Lang. Process., 24 (10): 1808-1818 (2016)

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Near and Far Field Speech-in-Noise Intelligibility Improvements Based on a Time-Frequency Energy Reallocation Approach., , , and . IEEE ACM Trans. Audio Speech Lang. Process., 24 (10): 1808-1818 (2016)On spectral and time domain energy reallocation for speech-in-noise intelligibility enhancement., and . INTERSPEECH, page 2050-2054. ISCA, (2014)Speech-in-noise intelligibility improvement based on power recovery and dynamic range compression., , and . EUSIPCO, page 2075-2079. IEEE, (2012)Enhancing the intelligibility of statistically generated synthetic speech by means of noise-independent modifications., , and . IEEE ACM Trans. Audio Speech Lang. Process., 22 (12): 2101-2111 (2014)Speech-in-noise intelligibility improvement based on spectral shaping and dynamic range compression., , and . INTERSPEECH, page 635-638. ISCA, (2012)A fast algorithm for improved intelligibility of speech-in-noise based on frequency and time domain energy reallocation., and . INTERSPEECH, page 60-64. ISCA, (2015)Statistical synthesizer with embedded prosodic and spectral modifications to generate highly intelligible speech in noise., , , , and . INTERSPEECH, page 3557-3561. ISCA, (2013)Effectiveness of Near-End Speech Enhancement Under Equal-Loudness and Equal-Level Constraints., , , and . INTERSPEECH, page 126-130. ISCA, (2016)Improved face-to-face communication using noise reduction and speech intelligibility enhancement., , and . ICASSP, page 5103-5107. IEEE, (2015)Improving the Quality of Standard GMM-Based Voice Conversion Systems by Considering Physically Motivated Linear Transformations., , and . IberSPEECH, volume 328 of Communications in Computer and Information Science, page 30-39. Springer, (2012)