Title :
Linear complexity of polyphase power residue sequences
Author :
Green, D.H. ; Smith, M.D. ; Martzoukos, N.
Author_Institution :
Dept. of Electr. Eng. & Electron., Univ. of Manchester Inst. of Sci. & Technol., UK
fDate :
8/1/2002 12:00:00 AM
Abstract :
The well known family of binary Legendre or quadratic residue sequences can be generalised to the multiple-valued case by employing a polyphase representation. These p-phase sequences, with p prime, also have prime length L, and can be constructed from the index sequence of length L or, equivalently, from the cosets of pth power residues and non-residues modulo-L. The linear complexity of these polyphase sequences is derived and shown to fall into four classes depending on the value assigned to b0, the initial digit of the sequence, and on whether p belongs to the set of pth power residues or not. The characteristic polynomials of the linear feedback shift registers that generate these sequences are also derived
Keywords :
binary sequences; computational complexity; cryptography; polynomials; binary Legendre sequences; binary sequences; cryptographic applications; key stream ciphers; linear complexity; linear feedback shift registers; multiple-valued case; p-phase sequences; polynomials; polyphase power residue sequences; quadratic residue sequences;
Journal_Title :
Communications, IEE Proceedings-
DOI :
10.1049/ip-com:20020359