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James W. Pitton
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2010 – 2019
- 2017
- [j11]Li Hou, Wanggen Wan, Kuan-Hui Lee, Jenq-Neng Hwang, Greg Okopal, James W. Pitton:
Robust Human Tracking Based on DPM Constrained Multiple-Kernel from a Moving Camera. J. Signal Process. Syst. 86(1): 27-39 (2017) - [c19]Scott Wisdom, Thomas Powers, James W. Pitton, Les E. Atlas:
Building recurrent networks by unfolding iterative thresholding for sequential sparse recovery. ICASSP 2017: 4346-4350 - [c18]Scott Wisdom, Thomas Powers, James W. Pitton, Les Atlas:
Deep recurrent NMF for speech separation by unfolding iterative thresholding. WASPAA 2017: 254-258 - [i3]Scott Wisdom, Thomas Powers, James W. Pitton, Les Atlas:
Deep Recurrent NMF for Speech Separation by Unfolding Iterative Thresholding. CoRR abs/1709.07124 (2017) - 2016
- [j10]Kuan-Hui Lee, Jenq-Neng Hwang, Greg Okopal, James W. Pitton:
Ground-Moving-Platform-Based Human Tracking Using Visual SLAM and Constrained Multiple Kernels. IEEE Trans. Intell. Transp. Syst. 17(12): 3602-3612 (2016) - [c17]Scott Wisdom, Les E. Atlas, James W. Pitton, Greg Okopal:
Benefits of noncircular statistics for nonstationary signals. ACSSC 2016: 554-558 - [c16]Scott Wisdom, Les Atlas, James W. Pitton:
On spectral noncircularity of natural signals. SAM 2016: 1-5 - [i2]Scott Wisdom, Thomas Powers, James W. Pitton, Les E. Atlas:
Interpretable Recurrent Neural Networks Using Sequential Sparse Recovery. CoRR abs/1611.07252 (2016) - 2015
- [c15]Li Hou, Wanggen Wan, Kuan-Hui Lee, Jenq-Neng Hwang, Greg Okopal, James W. Pitton:
Deformable multiple-kernel based human tracking using a moving camera. ICASSP 2015: 2249-2253 - [c14]Scott Wisdom, Greg Okopal, Les E. Atlas, James W. Pitton:
Voice activity detection using subband noncircularity. ICASSP 2015: 4505-4509 - [i1]Scott Wisdom, Thomas Powers, Les Atlas, James W. Pitton:
Enhancement and Recognition of Reverberant and Noisy Speech by Extending Its Coherence. CoRR abs/1509.00533 (2015) - 2014
- [c13]Scott Wisdom, James W. Pitton, Les Atlas:
Extending coherence for optimal detection of nonstationary harmonic signals. ACSSC 2014: 1784-1788 - [c12]Kuan-Hui Lee, Jenq-Neng Hwang, Greg Okopal, James W. Pitton:
Driving recorder based on-road pedestrian tracking using visual SLAM and Constrained Multiple-Kernel. ITSC 2014: 2629-2635 - 2012
- [c11]Florian Dadouchi, James W. Pitton, Cornel Ioana, Cédric Gervaise:
Time-frequency tracking using multi-window local phase analysis. ICASSP 2012: 3401-3404
2000 – 2009
- 2006
- [c10]James W. Pitton, Andrew Ganse, Gregory Anderson, David W. Krout:
Distributed Environmental Inversion for Multi-Static Sonar Tracking. FUSION 2006: 1-6 - 2005
- [c9]Somsak Sukittanon, Les E. Atlas, James W. Pitton, Karim Filali:
Improved modulation spectrum through multi-scale modulation frequency decomposition. ICASSP (4) 2005: 517-520 - 2004
- [j9]Somsak Sukittanon, Les E. Atlas, James W. Pitton:
Modulation-scale analysis for content identification. IEEE Trans. Signal Process. 52(10): 3023-3035 (2004) - 2003
- [c8]Somsak Sukittanon, Les E. Atlas, James W. Pitton, Jack McLaughlin:
Non-stationary signal classification using joint frequency analysis. ICASSP (6) 2003: 453-456 - 2000
- [j8]James W. Pitton:
The statistics of time-frequency analysis. J. Frankl. Inst. 337(4): 379-388 (2000)
1990 – 1999
- 1998
- [j7]James W. Pitton:
Positive Time-Frequency Distributions via Quadratic Programming. Multidimens. Syst. Signal Process. 9(4): 439-445 (1998) - [c7]James W. Pitton:
Nonstationary spectrum estimation and time-frequency concentration. ICASSP 1998: 2425-2428 - 1997
- [c6]James W. Pitton:
Linear and quadratic methods for positive time-frequency distributions. ICASSP 1997: 3649-3652 - 1996
- [j6]James W. Pitton, Kuansan Wang, Biing-Hwang Juang:
Time-frequency analysis and auditory modeling for automatic recognition of speech. Proc. IEEE 84(9): 1199-1215 (1996) - 1995
- [j5]James W. Pitton, Les E. Atlas:
Discrete-time implementation of the cone-kernel time-frequency representation. IEEE Trans. Signal Process. 43(8): 1996-1998 (1995) - [c5]Patrick J. Loughlin, James W. Pitton, Blake Hannaford:
Fast approximations to positive time-frequency distributions, with applications. ICASSP 1995: 1009-1012 - 1994
- [j4]Patrick J. Loughlin, James W. Pitton, Blake Hannaford:
Approximating time-frequency density functions via optimal combinations of spectrograms. IEEE Signal Process. Lett. 1(12): 199-202 (1994) - [j3]James W. Pitton, Les E. Atlas, Patrick J. Loughlin:
Applications of positive time-frequency distributions to speech processing. IEEE Trans. Speech Audio Process. 2(4): 554-566 (1994) - [j2]Patrick J. Loughlin, James W. Pitton, Les E. Atlas:
Construction of positive time-frequency distributions. IEEE Trans. Signal Process. 42(10): 2697-2705 (1994) - 1993
- [j1]Patrick J. Loughlin, James W. Pitton, Les E. Atlas:
Bilinear time-frequency representations: new insights and properties. IEEE Trans. Signal Process. 41(2): 750-767 (1993) - [c4]James W. Pitton, Patrick J. Loughlin, Les E. Atlas:
Positive time-frequency distributions via maximum entropy deconvolution of the evolutionary spectrum. ICASSP (4) 1993: 436-439 - 1992
- [c3]Patrick J. Loughlin, James W. Pitton, Les E. Atlas:
An information-theoretic approach to positive time-frequency distributions. ICASSP 1992: 125-128 - 1991
- [c2]Les E. Atlas, Patrick J. Loughlin, James W. Pitton:
Truly nonstationary techniques for the analysis and display of voiced speech. ICASSP 1991: 433-436 - [c1]Patrick J. Loughlin, James W. Pitton, Les E. Atlas:
New properties to alleviate interference in time-frequency representations. ICASSP 1991: 3205-3208
Coauthor Index
aka: Les Atlas
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