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1
A Hybrid Segmental Neural Net/Hidden Markov Model System for Continuous Speech Recognition
In: Institute of Electrical and Electronics Engineers. IEEE transactions on speech and audio processing. - New York, NY : Inst. 2 (1994) 1, 151-160
OLC Linguistik
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2
On Using Written Language Training Data for Spoken Language Modeling
In: DTIC (1994)
BASE
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3
Robust Continuous Speech Recognition.
In: DTIC AND NTIS (1994)
BASE
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4
Usable, Real-Time, Interactive Spoken Language Systems
In: DTIC AND NTIS (1994)
BASE
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5
Development of a Spoken Language System
In: DTIC AND NTIS (1992)
BASE
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6
BBN HARC and DELPHI Results on the ATIS Benchmarks - February 1991
In: DTIC (1991)
BASE
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7
Continuous Speech Recognition Using Segmental Neural Nets
In: DTIC (1991)
BASE
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8
Byblos Speech Recognition Benchmark Results
In: DTIC (1991)
BASE
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9
Systems
Kimball, O.A. (Mitarb.); Krasner, M.A. (Mitarb.); Kubala, G.F. (Mitarb.)...
In: Readings in speech recognition. - San Mateo, Calif. : Kaufmann (1990), 551-618
BLLDB
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10
Improvements in the BYBLOS Continuous Speech Recognition System
In: DTIC AND NTIS (1990)
BASE
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11
Acoustic-phonetic decoding of speech
In: Recent advances in speech understanding and dialog systems (Berlin [etc.], 1988), P.25-50
MPI für Psycholinguistik
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12
Speech Communication
Stevens, Kenneth N.; Allen, Jonathan; Halle, Morris. - : Research Laboratory of Electronics (RLE) at the Massachusetts Institute of Technology (MIT), 1987
BASE
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13
Research in Continuous Speech Recognition
In: DTIC AND NTIS (1984)
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14
Research in Continuous Speech Recognition.
In: DTIC AND NTIS (1983)
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15
Medium and low bit rate speech transmission
In: Automatic speech analysis and recognition (Dordrecht, 1982), p. 21-48
MPI für Psycholinguistik
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16
Speech Compression and Synthesis.
In: DTIC AND NTIS (1979)
Abstract: This document reports on work towards a very low rate phonetic vocoder, text to speech, and multirate speech compression. This work included improvement of the phonetic synthesis algorithms and continued gathering of the diphone templates data base for phonetic synthesis. It also included the initial design of a phonetic recognizer to operate in conjunction with the synthesizer. The combination of these two programs will result in the very low rate vocoder. The method of spectral harmonic deviation was tested in an LPC vocoder environment. The sources for the MIT text-to-speech system were translated from BCL to BCPL, and the runable program was also transferred to our computer. Research was begun on a multirate speech compression system capable of operating over a wide range of data rates. Keywords include: Speech synthesis; phonetic synthesis; diphone; LPC synthesis; vocoder; speech compression; linear prediction; voice-excited coder; high-frequency regeneration; spectral duplication; phonetic vocoder; spectral template; speech recognition; and phoneme recognition.
Keyword: *SPEECH COMPRESSION; *VOCODERS; ALGORITHMS; CODERS; Cybernetics; DATA RATE; ENVIRONMENTS; HARMONICS; HIGH FREQUENCY; LINEAR SYSTEMS; LOW RATE; PHONEMES; PHONETICS; PREDICTIONS; RANGE(EXTREMES); RATES; RECOGNITION; REGENERATION(ENGINEERING); SPECTRA; SPEECH; SPEECH RECOGNITION; SYNTHESIS; TEMPLATES; VOICE COMMUNICATIONS
URL: http://www.dtic.mil/docs/citations/ADA155396
http://oai.dtic.mil/oai/oai?&verb=getRecord&metadataPrefix=html&identifier=ADA155396
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17
Speech Compression and Synthesis
In: DTIC AND NTIS (1979)
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18
Speech Compression and Synthesis
In: DTIC AND NTIS (1979)
BASE
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19
Speech Compression and Synthesis
In: DTIC AND NTIS (1978)
BASE
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20
Speech Compression and Synthesis
In: DTIC AND NTIS (1978)
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