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Generation of Long Perfect Gaussian Integer Sequences.

, and . IEEE Signal Process. Lett., 24 (4): 515-519 (2017)

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On determination of the weight distribution of binary (168, 84, 24) extended quadratic residue code., , , , and . ISIT, page 644-646. IEEE, (2008)The Use of Multivariate Weak-Locator Polynomials to Decode Cyclic Codes up to Actual Minimum Distance., , , and . IEEE Trans. Inf. Theory, 64 (10): 6590-6603 (2018)Efficient Decoding of Systematic (41, 21, 9) Quadratic Residue Code., , , and . APSCC, page 128-133. IEEE Computer Society, (2008)Algebraic Decoding of the (89, 45, 17) Quadratic Residue Code., , , , and . IEEE Trans. Inf. Theory, 54 (11): 5005-5011 (2008)Further results on degree-2 perfect Gaussian integer sequences., , , and . IET Commun., 10 (12): 1542-1552 (2016)Algebraic decoding of (71, 36, 11), (79, 40, 15), and (97, 49, 15) quadratic residue codes., , , , and . IEEE Trans. Commun., 51 (9): 1463-1473 (2003)A Systematic Method for Constructing Sparse Gaussian Integer Sequences With Ideal Periodic Autocorrelation Functions., , , and . IEEE Trans. Commun., 64 (1): 365-376 (2016)A New Scheme to Determine the Weight Distributions of Binary Extended Quadratic Residue Codes., , , and . IEEE Trans. Commun., 57 (5): 1221-1224 (2009)Multivariate Interpolation Formula over Finite Fields and Its Applications in Coding Theory, , and . CoRR, (2012)Algebraic Decoding of Cyclic Codes Using Partial Syndrome Matrices.. IEEE Trans. Inf. Theory, 64 (2): 952-971 (2018)