Stochastic Non-Linear Pseudo-Random Sequence Generator

Many of the key stream generators which are used in practice are LFSR-based in the sense that they produce the key stream according to a rule y = C(L(x)), where L(x) denotes an internal linear bit stream, produced by small number of parallel linear feedback shift registers (LFSRs), and C denotes som...

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Main Author: Baghdad Science Journal
Format: Article
Language:English
Published: University of Baghdad, College of Science for Women 2010-06-01
Series:مجلة بغداد للعلوم
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Online Access:http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/1071
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author Baghdad Science Journal
author_facet Baghdad Science Journal
author_sort Baghdad Science Journal
collection DOAJ
description Many of the key stream generators which are used in practice are LFSR-based in the sense that they produce the key stream according to a rule y = C(L(x)), where L(x) denotes an internal linear bit stream, produced by small number of parallel linear feedback shift registers (LFSRs), and C denotes some nonlinear compression function. In this paper we combine between the output sequences from the linear feedback shift registers with the sequences out from non linear key generator to get the final very strong key sequence
format Article
id doaj-art-6b42eba526f647a4bc53b400b0f415c3
institution Kabale University
issn 2078-8665
2411-7986
language English
publishDate 2010-06-01
publisher University of Baghdad, College of Science for Women
record_format Article
series مجلة بغداد للعلوم
spelling doaj-art-6b42eba526f647a4bc53b400b0f415c32025-08-20T03:56:23ZengUniversity of Baghdad, College of Science for Womenمجلة بغداد للعلوم2078-86652411-79862010-06-017210.21123/bsj.7.2.1042-1046Stochastic Non-Linear Pseudo-Random Sequence GeneratorBaghdad Science JournalMany of the key stream generators which are used in practice are LFSR-based in the sense that they produce the key stream according to a rule y = C(L(x)), where L(x) denotes an internal linear bit stream, produced by small number of parallel linear feedback shift registers (LFSRs), and C denotes some nonlinear compression function. In this paper we combine between the output sequences from the linear feedback shift registers with the sequences out from non linear key generator to get the final very strong key sequencehttp://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/1071"Stochastic process, birth and death key generator (BDG), linear feedback shift register (LFSR), Pseudo- noise sequence, Auto-correlation function, Periodicity."
spellingShingle Baghdad Science Journal
Stochastic Non-Linear Pseudo-Random Sequence Generator
مجلة بغداد للعلوم
"Stochastic process, birth and death key generator (BDG), linear feedback shift register (LFSR), Pseudo- noise sequence, Auto-correlation function, Periodicity."
title Stochastic Non-Linear Pseudo-Random Sequence Generator
title_full Stochastic Non-Linear Pseudo-Random Sequence Generator
title_fullStr Stochastic Non-Linear Pseudo-Random Sequence Generator
title_full_unstemmed Stochastic Non-Linear Pseudo-Random Sequence Generator
title_short Stochastic Non-Linear Pseudo-Random Sequence Generator
title_sort stochastic non linear pseudo random sequence generator
topic "Stochastic process, birth and death key generator (BDG), linear feedback shift register (LFSR), Pseudo- noise sequence, Auto-correlation function, Periodicity."
url http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/1071
work_keys_str_mv AT baghdadsciencejournal stochasticnonlinearpseudorandomsequencegenerator