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Using generalized additive models and random forests to model prosodic prominence in German.

, , and . INTERSPEECH, page 272-276. ISCA, (2013)

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Rapid entrainment to spontaneous speech: A comparison of oscillator models., , , and . CogSci, cognitivesciencesociety.org, (2012)D64: a corpus of richly recorded conversational interaction., , , , and . J. Multimodal User Interfaces, 7 (1-2): 19-28 (2013)Optimization-based modeling of speech timing., , and . Speech Communication, (2015)Comparing Word and Syllable Prominence Rated by Naïve Listeners., , and . INTERSPEECH, page 1877-1880. ISCA, (2011)Towards the Automatic Detection of Involvement in Conversation., , , , , and . COST 2102 Conference, volume 6800 of Lecture Notes in Computer Science, page 163-170. Springer, (2010)Synthesis by word concatenation., , , and . EUROSPEECH, ISCA, (1999)Paper 8003 was not available at the time of publication oral presentation of poster papers no time to lose? time shrinking effects enhance the impression of rhythmic "isochrony" and fast speech rate., and . INTERSPEECH, page 1523-1526. ISCA, (2009)Bonntempo-corpus and bonntempo-tools: a database for the study of speech rhythm and rate., , , , and . INTERSPEECH, ISCA, (2004)Gaze Patterns in Turn-Taking., , , , and . INTERSPEECH, page 2246-2249. ISCA, (2012)Objective, Subjective and Linguistic Roads to Perceptual Prominence - How are they compared and why?, , and . INTERSPEECH, page 2386-2389. ISCA, (2012)