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Glottal Vocoding With Frequency-Warped Time-Weighted Linear Prediction., , , and . IEEE Signal Process. Lett., 24 (4): 446-450 (2017)Glottal source processing: From analysis to applications., , , and . Comput. Speech Lang., 28 (5): 1117-1138 (2014)Measuring the effect of fundamental frequency raising as a strategy for increasing vocal intensity in soft, normal and loud phonation., , and . Speech Commun., 38 (3-4): 321-334 (2002)OPENGLOT - An open environment for the evaluation of glottal inverse filtering., , , , , , , , and . Speech Commun., (2019)Glottal wave analysis with Pitch Synchronous Iterative Adaptive Inverse Filtering.. Speech Commun., 11 (2-3): 109-118 (1992)On the linearity of the relationship between the sound pressure level and the negative peak amplitude of the differentiated glottal flow in vowel production., , and . Speech Commun., 28 (4): 269-281 (1999)The Linear Predictive Modeling of Speech From Higher-Lag Autocorrelation Coefficients Applied to Noise-Robust Speaker Recognition., and . IEEE ACM Trans. Audio Speech Lang. Process., 25 (8): 1606-1617 (2017)Neural Network-Based Artificial Bandwidth Expansion of Speech., , and . IEEE Trans. Speech Audio Process., 15 (3): 873-881 (2007)Estimation of the glottal source from coded telephone speech using deep neural networks., , , and . Speech Commun., (2019)Generative adversarial network-based glottal waveform model for statistical parametric speech synthesis., , and . CoRR, (2019)