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Maximum intelligibility-based close-loop speech synthesis framework for noisy environments., , and . ICASSP, page 7997-8001. IEEE, (2013)Recognition of Chinese names in continuous speech for directory assistance applications., and . ICASSP, page 741-744. IEEE, (2002)A progress report of the Taiwan Mandarin radio speech corpus project., , , , , and . O-COCOSDA, page 1-6. IEEE, (2017)Modeling of Speaking Rate Influences on Mandarin Speech Prosody and Its Application to Speaking Rate-controlled TTS., , , , , , and . IEEE ACM Trans. Audio Speech Lang. Process., 22 (7): 1158-1171 (2014)Character-Level Linguistic Features Extraction for Text-to-Speech System., , , and . IJCLCLP, (2016)Probabilistic Latent Prosody Analysis for Robust Speaker Verification., , , and . ICASSP (1), page 105-108. IEEE, (2006)Building of children speech corpus for improving automatic subtitling services., , , , , and . ROCLING, page 325-333. The Association for Computational Linguistics and Chinese Language Processing (ACLCLP), (2019)基於增強式深層類神經網路之語言辨認系統(Reinforcement Training for Deep Neural Networks-based Language Recognition)In Chinese., , and . ROCLING, Association for Computational Linguistics and Chinese Language Processing (ACLCLP), Taiwan, (2016)Eigen-prosody analysis for robust speaker recognition under mismatch handset environment., , and . INTERSPEECH, page 1421. ISCA, (2004)NCTU-NTUT at IJCNLP-2017 Task 2: Deep Phrase Embedding using bi-LSTMs for Valence-Arousal Ratings Prediction of Chinese Phrases., , , and . IJCNLP (Shared Tasks), page 124-129. Asian Federation of Natural Language Processing, (2017)