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Study on the Effects of Characteristic Polynomial in LFSR for Randomness Quality

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@article{IJASEIT85,
   author = {Meilana Siswanto and Gunawan Witjaksono and Moesfa Soeheila and Zharfan Hamdan},
   title = {Study on the Effects of Characteristic Polynomial in LFSR for Randomness Quality},
   journal = {International Journal on Advanced Science, Engineering and Information Technology},
   volume = {1},
   number = {4},
   year = {2011},
   pages = {418--422},
   keywords = {LFSR effects in randomness; randomness quality; RNG},
   abstract = {Randomness quality of keys becomes an essential in secure communications, since the security of modern cryptographic techniques relies on unpredictable and irreproducible digital keys which are generated by random number generator (RNG). This study focuses on the effects of characteristic polynomial in linear feedback shift registers (LFSR) for randomness quality. RNG's output is produced by integrating binary random source based on optic and LFSR. In this observation, randomness of the RNG's output with different characteristic polynomials has been tested using National Institute of Standards & Technology (NIST) test. The result shows that RNG with LFSR which is characterized by a feedback being a primitive polynomial of n-1 passes all the NISTstandard statistical tests.},
   issn = {2088-5334},
   publisher = {INSIGHT - Indonesian Society for Knowledge and Human Development},
   url = {http://ijaseit.insightsociety.org/index.php?option=com_content&view=article&id=9&Itemid=1&article_id=85},
   doi = {10.18517/ijaseit.1.4.85}
}

EndNote

%A Siswanto, Meilana
%A Witjaksono, Gunawan
%A Soeheila, Moesfa
%A Hamdan, Zharfan
%D 2011
%T Study on the Effects of Characteristic Polynomial in LFSR for Randomness Quality
%B 2011
%9 LFSR effects in randomness; randomness quality; RNG
%! Study on the Effects of Characteristic Polynomial in LFSR for Randomness Quality
%K LFSR effects in randomness; randomness quality; RNG
%X Randomness quality of keys becomes an essential in secure communications, since the security of modern cryptographic techniques relies on unpredictable and irreproducible digital keys which are generated by random number generator (RNG). This study focuses on the effects of characteristic polynomial in linear feedback shift registers (LFSR) for randomness quality. RNG's output is produced by integrating binary random source based on optic and LFSR. In this observation, randomness of the RNG's output with different characteristic polynomials has been tested using National Institute of Standards & Technology (NIST) test. The result shows that RNG with LFSR which is characterized by a feedback being a primitive polynomial of n-1 passes all the NISTstandard statistical tests.
%U http://ijaseit.insightsociety.org/index.php?option=com_content&view=article&id=9&Itemid=1&article_id=85
%R doi:10.18517/ijaseit.1.4.85
%J International Journal on Advanced Science, Engineering and Information Technology
%V 1
%N 4
%@ 2088-5334

IEEE

Meilana Siswanto,Gunawan Witjaksono,Moesfa Soeheila and Zharfan Hamdan,"Study on the Effects of Characteristic Polynomial in LFSR for Randomness Quality," International Journal on Advanced Science, Engineering and Information Technology, vol. 1, no. 4, pp. 418-422, 2011. [Online]. Available: http://dx.doi.org/10.18517/ijaseit.1.4.85.

RefMan/ProCite (RIS)

TY  - JOUR
AU  - Siswanto, Meilana
AU  - Witjaksono, Gunawan
AU  - Soeheila, Moesfa
AU  - Hamdan, Zharfan
PY  - 2011
TI  - Study on the Effects of Characteristic Polynomial in LFSR for Randomness Quality
JF  - International Journal on Advanced Science, Engineering and Information Technology; Vol. 1 (2011) No. 4
Y2  - 2011
SP  - 418
EP  - 422
SN  - 2088-5334
PB  - INSIGHT - Indonesian Society for Knowledge and Human Development
KW  - LFSR effects in randomness; randomness quality; RNG
N2  - Randomness quality of keys becomes an essential in secure communications, since the security of modern cryptographic techniques relies on unpredictable and irreproducible digital keys which are generated by random number generator (RNG). This study focuses on the effects of characteristic polynomial in linear feedback shift registers (LFSR) for randomness quality. RNG's output is produced by integrating binary random source based on optic and LFSR. In this observation, randomness of the RNG's output with different characteristic polynomials has been tested using National Institute of Standards & Technology (NIST) test. The result shows that RNG with LFSR which is characterized by a feedback being a primitive polynomial of n-1 passes all the NISTstandard statistical tests.
UR  - http://ijaseit.insightsociety.org/index.php?option=com_content&view=article&id=9&Itemid=1&article_id=85
DO  - 10.18517/ijaseit.1.4.85

RefWorks

RT Journal Article
ID 85
A1 Siswanto, Meilana
A1 Witjaksono, Gunawan
A1 Soeheila, Moesfa
A1 Hamdan, Zharfan
T1 Study on the Effects of Characteristic Polynomial in LFSR for Randomness Quality
JF International Journal on Advanced Science, Engineering and Information Technology
VO 1
IS 4
YR 2011
SP 418
OP 422
SN 2088-5334
PB INSIGHT - Indonesian Society for Knowledge and Human Development
K1 LFSR effects in randomness; randomness quality; RNG
AB Randomness quality of keys becomes an essential in secure communications, since the security of modern cryptographic techniques relies on unpredictable and irreproducible digital keys which are generated by random number generator (RNG). This study focuses on the effects of characteristic polynomial in linear feedback shift registers (LFSR) for randomness quality. RNG's output is produced by integrating binary random source based on optic and LFSR. In this observation, randomness of the RNG's output with different characteristic polynomials has been tested using National Institute of Standards & Technology (NIST) test. The result shows that RNG with LFSR which is characterized by a feedback being a primitive polynomial of n-1 passes all the NISTstandard statistical tests.
LK http://ijaseit.insightsociety.org/index.php?option=com_content&view=article&id=9&Itemid=1&article_id=85
DO  - 10.18517/ijaseit.1.4.85