Investigation on N-gram Approximated RNNLMs for Recognition of Morphologically Rich Speech
July 15, 2019 ยท Declared Dead ยท ๐ International Conference on Statistical Language and Speech Processing
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Authors
Balรกzs Tarjรกn, Gyรถrgy Szaszรกk, Tibor Fegyรณ, Pรฉter Mihajlik
arXiv ID
1907.06407
Category
cs.CL: Computation & Language
Cross-listed
eess.AS
Citations
5
Venue
International Conference on Statistical Language and Speech Processing
Last Checked
5 months ago
Abstract
Recognition of Hungarian conversational telephone speech is challenging due to the informal style and morphological richness of the language. Recurrent Neural Network Language Model (RNNLM) can provide remedy for the high perplexity of the task; however, two-pass decoding introduces a considerable processing delay. In order to eliminate this delay we investigate approaches aiming at the complexity reduction of RNNLM, while preserving its accuracy. We compare the performance of conventional back-off n-gram language models (BNLM), BNLM approximation of RNNLMs (RNN-BNLM) and RNN n-grams in terms of perplexity and word error rate (WER). Morphological richness is often addressed by using statistically derived subwords - morphs - in the language models, hence our investigations are extended to morph-based models, as well. We found that using RNN-BNLMs 40% of the RNNLM perplexity reduction can be recovered, which is roughly equal to the performance of a RNN 4-gram model. Combining morph-based modeling and approximation of RNNLM, we were able to achieve 8% relative WER reduction and preserve real-time operation of our conversational telephone speech recognition system.
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