DocumentCode
779978
Title
Efficient WFST-Based One-Pass Decoding With On-The-Fly Hypothesis Rescoring in Extremely Large Vocabulary Continuous Speech Recognition
Author
Hori, Takaaki ; Hori, Chiori ; Minami, Yasuhiro ; Nakamura, Atsushi
Author_Institution
NTT Commun. Sci. Labs., NTT Corp., Kyoto
Volume
15
Issue
4
fYear
2007
fDate
5/1/2007 12:00:00 AM
Firstpage
1352
Lastpage
1365
Abstract
This paper proposes a novel one-pass search algorithm with on-the-fly composition of weighted finite-state transducers (WFSTs) for large-vocabulary continuous-speech recognition. In the standard search method with on-the-fly composition, two or more WFSTs are composed during decoding, and a Viterbi search is performed based on the composed search space. With this new method, a Viterbi search is performed based on the first of the two WFSTs. The second WFST is only used to rescore the hypotheses generated during the search. Since this rescoring is very efficient, the total amount of computation required by the new method is almost the same as when using only the first WFST. In a 65k-word vocabulary spontaneous lecture speech transcription task, our proposed method significantly outperformed the standard search method. Furthermore, our method was faster than decoding with a single fully composed and optimized WFST, where our method used only 38% of the memory required for decoding with the single WFST. Finally, we have achieved high-accuracy one-pass real-time speech recognition with an extremely large vocabulary of 1.8 million words
Keywords
Viterbi decoding; search problems; speech coding; speech recognition; transducers; Viterbi search; WFST-based one-pass decoding; large vocabulary continuous speech recognition; on-the-fly hypothesis rescoring; one-pass search algorithm; speech transcription; weighted finite-state transducers; Decoding; Hidden Markov models; Laboratories; Optimization methods; Search methods; Speech processing; Speech recognition; Transducers; Viterbi algorithm; Vocabulary; On-the-fly composition; speech recognition; weighted finite-state transducer (WFST);
fLanguage
English
Journal_Title
Audio, Speech, and Language Processing, IEEE Transactions on
Publisher
ieee
ISSN
1558-7916
Type
jour
DOI
10.1109/TASL.2006.889790
Filename
4156199
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