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Article type: Research Article
Authors: Raškinis, Gailius1; 4; * | Paškauskaitė, Gintarė2 | Saudargienė, Aušra1; 3 | Kazlauskienė, Asta1 | Vaičiūnas, Airenas1
Affiliations: [1] Vytautas Magnus University, K. Donelaičio 58, LT-44248, Kaunas, Lithuania | [2] Kaunas University of Technology, K. Donelaičio 73, LT-44249, Kaunas, Lithuania | [3] Lithuanian University of Health Sciences, Eiveniu ˛ 4, LT-50161, Kaunas, Lithuania | [4] Recognisoft, Ltd., K. Donelaičio 79-1, LT-44249, Kaunas, Lithuania. E-mails: [email protected], [email protected], [email protected], [email protected], [email protected]
Correspondence: [*] Corresponding author.
Abstract: Conventional large vocabulary automatic speech recognition (ASR) systems require a mapping from words into sub-word units to generalize over the words that were absent in the training data and to enable the robust estimation of acoustic model parameters. This paper surveys the research done during the last 15 years on the topic of word to sub-word mappings for Lithuanian ASR systems. It also compares various phoneme and grapheme based mappings across a broad range of acoustic modelling techniques including monophone and triphone based Hidden Markov models (HMM), speaker adaptively trained HMMs, subspace gaussian mixture models (SGMM), feed-forward time delay neural network (TDNN), and state-of-the-art low frame rate bidirectional long short term memory (LFR BLSTM) recurrent deep neural network. Experimental comparisons are based on a 50-hour speech corpus. This paper shows that the best phone-based mapping significantly outperforms a grapheme-based mapping. It also shows that the lowest phone error rate of an ASR system is achieved by the phoneme-based lexicon that explicitly models syllable stress and represents diphthongs as single phonetic units.
Keywords: speech recognition, grapheme, phoneme, G2P conversion, HMM, SGMM, TDNN, BLSTM, Lithuanian
Journal: Informatica, vol. 30, no. 3, pp. 573-593, 2019
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