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Control of prosodic focus in corpus-based generation of fundamental frequency based on the generation process model., , и . INTERSPEECH, стр. 1216. ISCA, (2008)Automatic Evaluation of Soft Articulatory Contact for Stuttering Treatment., , и . INTERSPEECH, стр. 1546-1550. ISCA, (2018)Use of Nods Less Synchronized with Turn-Taking and Prosody During Conversations in Adults with Autism., , , , , и . INTERSPEECH, стр. 1136-1140. ISCA, (2022)Using FO Contour Generation Process Model for Improved and Flexible Control of Prosodie Features in HMM-based Speech Synthesis., , , , , и . ESSV, том 58 из Studientexte zur Sprachkommunikation, стр. 84-93. TUDpress, Dresden, (2010)Evaluation of a semi-autonomous attentive listening system with takeover prompting., , , , и . CoRR, (2024)Adaptation of Prosody in Speech Synthesis by Changing Command Values of the Generation Process Model of Fundamental Frequency., , , , , и . INTERSPEECH, стр. 2793-2796. ISCA, (2011)Towards Objective Evaluation of Socially-Situated Conversational Robots: Assessing Human-Likeness through Multimodal User Behaviors., , , , и . ICMI Companion, стр. 86-90. ACM, (2023)Control of prosodic focus in corpus-based generation of fundamental frequency contours of Japanese based on the generation process model., , и . ICASSP, стр. 4257-4260. IEEE, (2009)Effect of attentive listening robot on pleasure and arousal change in psychiatric daycare., , , , и . Adv. Robotics, 37 (21): 1382-1391 (ноября 2023)Acknowledgment of Emotional States: Generating Validating Responses for Empathetic Dialogue., , , , , и . CoRR, (2024)