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Prediction of Binaural Intelligibility Level Differences in Reverberation.

, , and . INTERSPEECH, page 37-40. ISCA, (2011)

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Model-based integration of reverberation for noise-adaptive near-end listening enhancement., , , and . INTERSPEECH, page 75-79. ISCA, (2015)Objective Assessment of a Speech Enhancement Scheme with an Automatic Speech Recognition-Based System., , , , , and . ITG Symposium on Speech Communication, page 1-5. VDE / IEEE, (2018)measured_times_for_voice_control_efficiency_study., , , , , and . (February 2023)Intelligibility-Enhancing Speech Modifications - The Hurricane Challenge 2.0., , , and . INTERSPEECH, page 1341-1345. ISCA, (2020)Speech Intelligibility Prediction for Hearing-Impaired Listeners with the LEAP Model., , , , , , , and . INTERSPEECH, page 3498-3502. ISCA, (2022)A study on speech quality and speech intelligibility measures for quality assessment of single-channel dereverberation algorithms., , , , , , , , , and 1 other author(s). IWAENC, page 233-237. IEEE, (2014)Reduction of Subjective Listening Effort for TV Broadcast Signals With Recurrent Neural Networks., , , , , and . IEEE ACM Trans. Audio Speech Lang. Process., (2021)Automatic Live Monitoring of Communication Quality for Normal-Hearing and Hearing-Impaired Listeners., , , and . ICCHP (2), volume 6180 of Lecture Notes in Computer Science, page 568-575. Springer, (2010)Non-Intrusive Objective Assessment of Speech Perception in Noisy Classrooms., , and . ITG Conference on Speech Communication, page 1-4. IEEE, (2012)Prediction of Binaural Intelligibility Level Differences in Reverberation., , and . INTERSPEECH, page 37-40. ISCA, (2011)