Continuous phone recognition in the Sigma cognitive architecture
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[1] P. Denes,et al. The speech chain : the physics and biology of spoken language , 1963 .
[2] William D Marslen-Wilson,et al. Processing interactions and lexical access during word recognition in continuous speech , 1978, Cognitive Psychology.
[3] R. Gray,et al. Vector quantization , 1984, IEEE ASSP Magazine.
[4] W. Marslen-Wilson. Functional parallelism in spoken word-recognition , 1987, Cognition.
[5] Hsiao-Wuen Hon,et al. Speaker-independent phone recognition using hidden Markov models , 1989, IEEE Trans. Acoust. Speech Signal Process..
[6] Lawrence R. Rabiner,et al. A tutorial on hidden Markov models and selected applications in speech recognition , 1989, Proc. IEEE.
[7] Steve Young,et al. Token passing: a simple conceptual model for connected speech recognition systems , 1989 .
[8] H.,et al. Token Passing : a Simple Conceptual Model for ConnectedSpeech Recognition , 1989 .
[9] Victor Zue,et al. Speech database development at MIT: Timit and beyond , 1990, Speech Commun..
[10] Jean-Luc Gauvain,et al. Speaker-Independent Phone Recognition Using BREF , 1992, HLT.
[11] Jonathan G. Fiscus,et al. Darpa Timit Acoustic-Phonetic Continuous Speech Corpus CD-ROM {TIMIT} | NIST , 1993 .
[12] D. Howard,et al. Speech and audio signal processing: processing and perception of speech and music [Book Review] , 2000 .
[13] James H. Martin,et al. Speech and language processing: an introduction to natural language processing , 2000 .
[14] Brendan J. Frey,et al. Factor graphs and the sum-product algorithm , 2001, IEEE Trans. Inf. Theory.
[15] X. Jin. Factor graphs and the Sum-Product Algorithm , 2002 .
[16] Geoffrey Zweig,et al. The graphical models toolkit: An open source software system for speech and time-series processing , 2002, 2002 IEEE International Conference on Acoustics, Speech, and Signal Processing.
[17] Steve Young,et al. The HTK book version 3.4 , 2006 .
[18] Ray Jackendoff,et al. A Parallel Architecture perspective on language processing , 2007, Brain Research.
[19] Mehryar Mohri,et al. Speech Recognition with Weighted Finite-State Transducers , 2008 .
[20] Ruizhi Wang,et al. A framework and token passing model for continuous speech recognition with dynamic Bayesian networks , 2008 .
[21] Paul S. Rosenbloom,et al. A Graphical Rethinking of the Cognitive Inner Loop , 2009 .
[22] Pat Langley,et al. Cognitive architectures: Research issues and challenges , 2009, Cognitive Systems Research.
[23] Nir Friedman,et al. Probabilistic Graphical Models - Principles and Techniques , 2009 .
[24] Daniel Povey,et al. The Kaldi Speech Recognition Toolkit , 2011 .
[25] Richard E. Clark,et al. Interpersonal and Leadership Skills: Using Virtual Humans to Teach New Officers , 2011 .
[26] David V. Pynadath,et al. Fusing Symbolic and Decision-Theoretic Problem Solving + Perception in a Graphical Cognitive Architecture , 2011, BICA.
[27] Carla Lopes,et al. Phone Recognition on the TIMIT Database , 2012 .
[28] Byron Boots,et al. Designing intelligent robots : reintegrating AI : papers from the AAAI Spring Symposium , 2012 .
[29] John E. Laird,et al. Cognitive Robotics Using the Soar Cognitive Architecture , 2012, CogRob@AAAI.
[30] Paul S. Rosenbloom. Deconstructing Reinforcement Learning in Sigma , 2012, AGI.
[31] Tara N. Sainath,et al. Deep Neural Networks for Acoustic Modeling in Speech Recognition: The Shared Views of Four Research Groups , 2012, IEEE Signal Processing Magazine.
[32] John E. Laird,et al. The Soar Cognitive Architecture , 2012 .
[33] Paul S. Rosenbloom,et al. Graphical Models for Integrated Intelligent Robot Architectures , 2012, AAAI Spring Symposium: Designing Intelligent Robots.
[34] Himanshu Joshi,et al. Isolated word recognition in the Sigma cognitive architecture , 2014, BICA 2014.
[35] Paul S. Rosenbloom. Supraarchitectural Capability Integration: From Soar to Sigma , 2015 .
[36] Hillol Kargupta,et al. Graphical Models: Foundations of Neural Computation , 2016, Pattern Analysis and Applications.
[37] Paul S. Rosenbloom,et al. The Sigma Cognitive Architecture and System: Towards Functionally Elegant Grand Unification , 2016, J. Artif. Gen. Intell..