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An improved method for predicting truncated multiple recursive generators with unknown parameters.

, , , , , , , , , , and . Des. Codes Cryptogr., 91 (5): 1713-1736 (May 2023)

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A New Method for Finding Affine Sub-Families of NFSR Sequences., , , and . IEEE Trans. Inf. Theory, 65 (2): 1249-1257 (2019)On the distinctness of binary sequences derived from primitive sequences modulo square-free odd integers., , and . IACR Cryptol. ePrint Arch., (2012)On s-uniform property of compressing sequences derived from primitive sequences modulo odd prime powers., , and . Sci. China Inf. Sci., 60 (5): 052102:1-052102:12 (2017)Predicting truncated multiple recursive generators with unknown parameters., , and . Des. Codes Cryptogr., 88 (6): 1083-1102 (2020)Distribution Properties of Binary Sequences Derived from Primitive Sequences Modulo Square-free Odd Integers., , and . Inscrypt, volume 11449 of Lecture Notes in Computer Science, page 568-585. Springer, (2018)Further results on the distinctness of modulo 2 reductions of primitive sequences over Z/(232-1)., , and . Des. Codes Cryptogr., 74 (2): 467-480 (2015)Further Result on Distribution Properties of Compressing Sequences Derived From Primitive Sequences Over Z/(pe)., , and . IEEE Trans. Inf. Theory, 59 (8): 5016-5022 (2013)On the distinctness of modular reductions of primitive sequences over Z/(232-1)., , and . Des. Codes Cryptogr., 70 (3): 359-368 (2014)An improved method for predicting truncated multiple recursive generators with unknown parameters., , , , , , , , , and 1 other author(s). Des. Codes Cryptogr., 91 (5): 1713-1736 (May 2023)Distribution properties of compressing sequences derived from primitive sequences over Z/(pe)., and . IEEE Trans. Inf. Theory, 56 (1): 555-563 (2010)