DocumentCode :
2914717
Title :
Estimation of hidden Markov model parameters by minimizing empirical error rate
Author :
Ljolje, A. ; Ephraim, Y. ; Rabiner, L.
Author_Institution :
AT&T Bell Lab., Murray Hill, NJ, USA
fYear :
1990
fDate :
3-6 Apr 1990
Firstpage :
709
Abstract :
An approach for designing a set of acoustic models for speech recognition applications which results in a minimal empirical error rate for a given decoder and training data is studied. In an evaluation of the system for an isolated word recognition task, hidden Markov models (HMMs) are used to characterize the probability density functions of the acoustic signals from the different words in the vocabulary. Decoding is performed by applying the maximum aposteriori decision rule to the acoustic models. The HMMs are estimated by minimizing a differentiable cost function, which approximates the empirical error rate function, using the steepest descent method. The HMMs designed by the minimum empirical error rate approach were used in multispeaker recognition of the English E-set words and compared to models designed by the standard maximum-likelihood estimation approach. The approach increased recognition accuracy from 68.2% to 76.2% on the training set and from 53.4% to 56.4% on an independent set of test data
Keywords :
Markov processes; decoding; parameter estimation; probability; speech recognition; E-set words; English; decoding; empirical error rate; hidden Markov model; multispeaker recognition; probability density functions; speech recognition; Acoustic applications; Character recognition; Error analysis; Hidden Markov models; Maximum a posteriori estimation; Maximum likelihood decoding; Probability density function; Speech recognition; Training data; Vocabulary;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech, and Signal Processing, 1990. ICASSP-90., 1990 International Conference on
Conference_Location :
Albuquerque, NM
ISSN :
1520-6149
Type :
conf
DOI :
10.1109/ICASSP.1990.115867
Filename :
115867
Link To Document :
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