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High speed decoding of the binary (47, 24, 11) quadratic residue code.

, , , , and . Inf. Sci., 180 (20): 4060-4068 (2010)

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Techniques for Computing the Discrete Fourier Transform Using the Quadratic Residue Fermat Number Systems., , , , and . IEEE Trans. Computers, 35 (11): 1008-1012 (1986)Algebraic decoding of the (73, 37, 13) quadratic residue code., , and . IET Commun., 6 (10): 1326-1333 (2012)A Fast Algorithm for the Syndrome Calculation in Algebraic Decoding of Reed-Solomon Codes., , and . IEEE Trans. Commun., 55 (12): 2240-2244 (2007)Fast algorithm for computing the roots of error locator polynomials up to degree 11 in Reed-Solomon decoders., , and . IEEE Trans. Commun., 49 (5): 779-783 (2001)Simplified procedure for decoding nonsystematic reed-solomon codes over gf(2m) using euclid's algorithm and the fast fourier transform., , and . IEEE Trans. Commun., 57 (6): 1588-1592 (2009)Image deblurring in the presence of salt-and-pepper noise., , , , and . ICIP, page 2389-2393. IEEE, (2017)Sparse Kalman filter., , , and . ChinaSIP, page 1022-1026. IEEE, (2015)Impulsive noise suppression in the case of frequency estimation by exploring signal sparsity., , , , and . Digit. Signal Process., (2016)Mixed Near-Field and Far-Field Source Localization Based on Exact Spatial Propagation Geometry., , , and . IEEE Trans. Veh. Technol., 70 (4): 3540-3551 (2021)A Human Auditory Perception Loss Function Using Modified Bark Spectral Distortion for Speech Enhancement., , , and . Neural Process. Lett., 51 (3): 2945-2957 (2020)