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Gloria Faye Boudreaux-Bartels
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- affiliation: University of Rhode Island, USA
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2010 – 2019
- 2018
- [j24]Amal Feltane, Gloria Faye Boudreaux-Bartels, Yacine Boudria:
Using the Lambert-W Function to Create a New Class of Warped Time-Frequency Representations. Circuits Syst. Signal Process. 37(8): 3191-3205 (2018)
2000 – 2009
- 2002
- [j23]Byeong-Gwan Iem, Antonia Papandreou-Suppappola, Gloria Faye Boudreaux-Bartels:
Wideband Weyl symbols for dispersive time-varying processing of systems and random signals. IEEE Trans. Signal Process. 50(5): 1077-1090 (2002) - 2001
- [j22]Manuel Davy, Christian Doncarli, Gloria Faye Boudreaux-Bartels:
Improved optimization of time-frequency-based signal classifiers. IEEE Signal Process. Lett. 8(2): 52-57 (2001) - [j21]Olcay Akay, Gloria Faye Boudreaux-Bartels:
Fractional convolution and correlation via operator methods and an application to detection of linear FM signals. IEEE Trans. Signal Process. 49(5): 979-993 (2001) - [j20]Antonia Papandreou-Suppappola, Robin L. Murray, Byeong-Gwan Iem, Gloria Faye Boudreaux-Bartels:
Group delay shift covariant quadratic time-frequency representations. IEEE Trans. Signal Process. 49(11): 2549-2564 (2001) - 2000
- [j19]Olcay Akay, Gloria Faye Boudreaux-Bartels:
Joint fractional signal representations. J. Frankl. Inst. 337(4): 365-378 (2000) - [j18]Byeong-Gwan Iem, Antonia Papandreou-Suppappola, Gloria Faye Boudreaux-Bartels:
Classes of smoothed Weyl symbols. IEEE Signal Process. Lett. 7(7): 186-188 (2000)
1990 – 1999
- 1999
- [j17]Shubha Kadambe, Robin L. Murray, Gloria Faye Boudreaux-Bartels:
Wavelet transform-based QRS complex detector. IEEE Trans. Biomed. Eng. 46(7): 838-848 (1999) - [j16]Antonio H. Costa, Gloria Faye Boudreaux-Bartels:
An overview of aliasing errors in discrete-time formulations of time-frequency representations. IEEE Trans. Signal Process. 47(5): 1463-1474 (1999) - [j15]Franz Hlawatsch, Antonia Papandreou-Suppappola, Gloria Faye Boudreaux-Bartels:
The power classes-quadratic time-frequency representations with scale covariance and dispersive time-shift covariance. IEEE Trans. Signal Process. 47(11): 3067-3083 (1999) - [c27]Byeong-Gwan Iem, Antonia Papandreou-Suppappola, Gloria Faye Boudreaux-Bartels:
New time-frequency symbol classification. ICASSP 1999: 1345-1348 - [c26]Robin L. Murray, Antonia Papandreou-Suppappola, Gloria Faye Boudreaux-Bartels:
A new class of affine higher order time-frequency representations. ICASSP 1999: 1613-1616 - 1998
- [j14]Antonia Papandreou-Suppappola, Franz Hlawatsch, Gloria Faye Boudreaux-Bartels:
Quadratic Time-Frequency Representations with Scale Covariance and Generalized Time-Shift Covariance: A Unified Framework for the Affine, Hyperbolic, and Power Classes. Digit. Signal Process. 8(1): 3-48 (1998) - [j13]Olcay Akay, Gloria Faye Boudreaux-Bartels:
Unitary and Hermitian fractional operators and their relation to the fractional Fourier transform. IEEE Signal Process. Lett. 5(12): 312-314 (1998) - [c25]Byeong-Gwan Iem, Antonia Papandreou, Gloria Faye Boudreaux-Bartels:
New concepts in narrowband and wideband Weyl correspondence time-frequency techniques. ICASSP 1998: 1573-1576 - [c24]Robin L. Murray, Antonia Papandreou-Suppappola, Gloria Faye Boudreaux-Bartels:
New higher order spectra and time-frequency representations for dispersive signal analysis. ICASSP 1998: 2305-2308 - 1997
- [j12]Franz Hlawatsch, Antonia Papandreou-Suppappola, Gloria Faye Boudreaux-Bartels:
The hyperbolic class of quadratic time-frequency representations. II. Subclasses, intersection with the affine and power classes, regularity, and unitarity. IEEE Trans. Signal Process. 45(2): 303-315 (1997) - [c23]Antonia Papandreou-Suppappola, Robin L. Murray, Gloria Faye Boudreaux-Bartels:
Localized subclasses of quadratic time-frequency representations. ICASSP 1997: 2041-2044 - [c22]Olufemi Adeyemi, Gloria Faye Boudreaux-Bartels:
Improved accuracy in the singularity spectrum of multifractal chaotic time series. ICASSP 1997: 2377-2380 - 1995
- [j11]Antonio H. Costa, Gloria Faye Boudreaux-Bartels:
Design of time-frequency representations using a multiform, tiltable exponential kernel. IEEE Trans. Signal Process. 43(10): 2283-2301 (1995) - [j10]Richard J. Hartnett, Gloria Faye Boudreaux-Bartels:
Improved filter sharpening. IEEE Trans. Signal Process. 43(12): 2805-2810 (1995) - [c21]Antonio H. Costa, Gloria Faye Boudreaux-Bartels:
Time-frequency representations with multiform, tiltable Chebyshev kernels. ICASSP 1995: 1001-1004 - [c20]Antonia Papandreou-Suppappola, Franz Hlawatsch, Gloria Faye Boudreaux-Bartels:
A unified framework for the scale covariant affine, hyperbolic, and power class quadratic time-frequency representations using generalized time shifts. ICASSP 1995: 1017-1020 - [c19]Gloria Faye Boudreaux-Bartels, Antonio H. Costa:
Design of zero-phase, multiform, tiltable two-dimensional filters. ICASSP 1995: 2603-2606 - 1993
- [j9]Antonia Papandreou, Gloria Faye Boudreaux-Bartels:
Generalization of the Choi-Williams Distribution and the Butterworth Distribution for Time-Frequency Analysis. IEEE Trans. Signal Process. 41(1): 463-472 (1993) - [j8]Richard J. Hartnett, Gloria Faye Boudreaux-Bartels:
On the use of cyclotomic polynomial prefilters for efficient FIR filter design. IEEE Trans. Signal Process. 41(5): 1766-1779 (1993) - [j7]T. J. McHale, Gloria Faye Boudreaux-Bartels:
An algorithm for synthesizing signals from partial time-frequency models using the cross Wigner distribution. IEEE Trans. Signal Process. 41(5): 1986-1990 (1993) - [j6]Fernand S. Cohen, Shubha Kadambe, Gloria Faye Boudreaux-Bartels:
Tracking of unknown nonstationary chirp signals using unsupervised clustering in the Wigner distribution space. IEEE Trans. Signal Process. 41(11): 3085-3101 (1993) - [j5]Antonia Papandreou, Franz Hlawatsch, Gloria Faye Boudreaux-Bartels:
The hyperbolic class of quadratic time-frequency representations. I. Constant-Q warping, the hyperbolic paradigm, properties, and members. IEEE Trans. Signal Process. 41(12): 3425-3444 (1993) - [c18]Franz Hlawatsch, Antonia Papandreou, Gloria Faye Boudreaux-Bartels:
Regularity and unitarity of affine and hyperbolic time-frequency representations. ICASSP (3) 1993: 245-248 - 1992
- [j4]Franz Hlawatsch, Gloria Faye Boudreaux-Bartels:
Linear and quadratic time-frequency signal representations. IEEE Signal Process. Mag. 9(2): 21-67 (1992) - [j3]Shubha Kadambe, Gloria Faye Boudreaux-Bartels:
Application of the wavelet transform for pitch detection of speech signals. IEEE Trans. Inf. Theory 38(2): 917-924 (1992) - [j2]Shubha Kadambe, Gloria Faye Boudreaux-Bartels:
A comparison of the existence of 'cross terms' in the Wigner distribution and the squared magnitude of the wavelet transform and the short-time Fourier transform. IEEE Trans. Signal Process. 40(10): 2498-2517 (1992) - [c17]Petar M. Djuric, Steven M. Kay, Gloria Faye Boudreaux-Bartels:
Segmentation of nonstationary signals. ICASSP 1992: 161-164 - [c16]Antonia Papandreou, Gloria Faye Boudreaux-Bartels:
Distributions for time-frequency analysis: a generalization of Choi-Williams and the Butterworth distribution. ICASSP 1992: 181-184 - [c15]Richard J. Hartnett, Leland B. Jackson, Gloria Faye Boudreaux-Bartels:
IIR filters with reduced multipliers using cyclotomic polynomial numerators. ICASSP 1992: 321-324 - 1991
- [c14]Shubha Kadambe, Gloria Faye Boudreaux-Bartels:
A comparison of a wavelet functions for pitch detection of speech signals. ICASSP 1991: 449-452 - [c13]Richard J. Hartnett, Gloria Faye Boudreaux:
Design of efficient FIR filters using cyclotomic polynomial prefilters. ICASSP 1991: 1973-1976 - 1990
- [c12]Richard J. Hartnett, Gloria Faye Boudreaux:
Design of efficient parallel hybrid FIR filters using dynamic programming and subset selection methods. ICASSP 1990: 1337-1340 - [c11]Haiguang Chen, Gloria Faye Boudreaux-Bartels:
On application of two-dimensional AR modeling of Wigner distribution for efficient coding and effective filtering. ICASSP 1990: 2463-2466 - [c10]Shubha Kadambe, Gloria Faye Boudreaux-Bartels:
A pitch detector based on event detection using the dyadic wavelet tranform. ICSLP 1990: 469-472
1980 – 1989
- 1989
- [c9]Gloria Faye Boudreaux-Bartels, Donald W. Tufts, P. Dhir, G. Sadasiv, G. Fischer:
Analysis of errors in the computation of Fourier coefficients using the arithmetic Fourier transform (AFT) and summation by parts (SBP). ICASSP 1989: 1011-1014 - [c8]Shubha Kadambe, Gloria Faye Boudreaux-Bartels, Patrick Duvaut:
Window length selection for smoothing the Wigner distribution by applying an adaptive filter technique. ICASSP 1989: 2226-2229 - 1988
- [c7]Fernand S. Cohen, Gloria Faye Boudreaux-Bartels, Shubha Kadambe:
Tracking of unknown non-stationary chirp signals using unsupervised clustering in the Wigner distribution space. ICASSP 1988: 2180-2183 - 1987
- [c6]Gloria Faye Boudreaux-Bartels, Thomas W. Parks:
Discrete Fourier transform using summation by parts. ICASSP 1987: 1827-1830 - [c5]Gloria Faye Boudreaux-Bartels, P. J. Wiseman:
Wigner distribution analysis of acoustic well logs. ICASSP 1987: 2237-2240 - 1986
- [j1]Gloria Faye Boudreaux-Bartels, Thomas W. Parks:
Time-varying filtering and signal estimation using Wigner distribution synthesis techniques. IEEE Trans. Acoust. Speech Signal Process. 34(3): 442-451 (1986) - 1985
- [c4]Steven Kay, Gloria Faye Boudreaux-Bartels:
On the optimality of the Wigner distribution for detection. ICASSP 1985: 1017-1020 - 1984
- [c3]Gloria Faye Boudreaux-Bartels, Thomas W. Parks:
Signal estimation using modified Wigner distributions. ICASSP 1984: 231-234 - 1983
- [c2]Gloria Faye Boudreaux, Thomas W. Parks:
Reducing aliasing in the Wigner distribution using implicit spline interpolation. ICASSP 1983: 1438-1441 - 1980
- [c1]Gloria Faye Boudreaux, Thomas W. Parks:
Digital filters with thinned numerators. ICASSP 1980: 248-251
Coauthor Index
aka: Antonia Papandreou
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