151 results on '"Junqua, Jean-Claude"'
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52. Blind channel estimation based on speech correlation structure
53. Piecewise linear constraints for model space adaptation
54. Dynamic estimation of a noise over estimation factor for Jacobian-based adaptation
55. Maximum-likelihood training of a bipartite acoustic model for speech recognition
56. Separating speaker and environment variabilities for improved recognition in non-stationary conditions
57. Blind channel estimation based on speech correlation structure.
58. Dynamic estimation of a noise over estimation factor for Jacobian-based adaptation.
59. EWAVES: an efficient decoding algorithm for lexical tree based speech recognition
60. Speaker identification and verification using eigenvoices
61. Speech recognition system employing multiple grammar networks
62. Techniques for robust speech recognition in the car environment
63. Maximum likelihood eigenspace and MLLR for speech recognition in noisy environments
64. Extraction of reliable transformation parameters for unsupervised speaker adaptation
65. Low complexity, high accuracy clustering method for speech recognizer
66. Rescoring multiple pronunciations generated from spelled words
67. Robust and compact multilingual word recognizers using features extracted from a phoneme similarity front-end
68. Eigenvoices for speaker adaptation
69. Influence of the speaking style and the noise spectral tilt on the lombard reflex and automatic speech recognition
70. System and method using N-best strategy for real time recognition of continuously spelled names
71. System and method for constructing clustered dictionary for speech and text recognition
72. Impact of the unknown communication channel on automatic speech recognition: a review
73. The influence of acoustics on speech production: A noise-induced stress phenomenon known as the Lombard reflex
74. Context modeling and clustering in continuous speech recognition
75. An experimental Japanese/English interpreting video phone system
76. Time derivatives, cepstrai normaiization, and spectral parameter filtering for continuously spelled names over the telephone
77. Method for determining boundaries of isolated words within a speech signal
78. Naturalness of the interaction in multimodal applications
79. A duration study of speech vowels produced in noise
80. Hidden Markov models and selectively trained neural networks for connected confusable word recognition
81. Error correction and ambiguity resolution in multimodal man-machine dialogue
82. Selectively trained neural networks for connected word recognition in noisy environments
83. Habitable interaction in goal-oriented multimodal dialogue systems
84. Latitudes: Where speech met the beach the time of a workshop
85. The Lombard reflex and its role on human listeners and automatic speech recognizers
86. A flexible multimodal dialogue architecture independent of the application
87. Acoustic and production pilot studies of speech vowels produced in noise
88. Selectively trained neural networks for the discrimination of normal and lombard speech
89. A spoken language interface for a telephone switchboard operator center
90. A study of endpoint detection algorithms in adverse conditions: incidence on a DTW and HMM recognizer
91. Towards an artificial laboratory for the design and simulation of cooperative speech processing algorithms
92. Toward robustness in isolated-word automatic speech recognition
93. A two-pass hybrid system using a low dimensional auditory model for speaker-independent isolated-word recognition
94. StanisLAX: An artificial laboratory for the development of cooperative speech processing algorithms
95. SmarTspelLTM: A Multipass Recognition System for Name Retrieval over the Telephone.
96. PII: S0167-6393(03)00119-5
97. Comparative study of ASR front-ends in noise
98. Evaluation of ASR front ends in speaker‐dependent and speaker‐independent recognition
99. SAIPH: A segmentation system for automatic labeling of a large speech database. Application to speech recognition
100. A knowledge engineering approach to speech processing using a blackboard model
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