An iterative algorithm for parametrization of shortest length shift registers over finite rings
Information Theory
2018-01-11 v1 Symbolic Computation
math.IT
Abstract
The construction of shortest feedback shift registers for a finite sequence S_1,...,S_N is considered over the finite ring Z_{p^r}. A novel algorithm is presented that yields a parametrization of all shortest feedback shift registers for the sequence of numbers S_1,...,S_N, thus solving an open problem in the literature. The algorithm iteratively processes each number, starting with S_1, and constructs at each step a particular type of minimal Gr\"obner basis. The construction involves a simple update rule at each step which leads to computational efficiency. It is shown that the algorithm simultaneously computes a similar parametrization for the reciprocal sequence S_N,...,S_1.
Keywords
Cite
@article{arxiv.1201.5921,
title = {An iterative algorithm for parametrization of shortest length shift registers over finite rings},
author = {M. Kuijper and R. Pinto},
journal= {arXiv preprint arXiv:1201.5921},
year = {2018}
}
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