Novel Architecture for Data Shuffling Using Fisher Yates Shuffle Algorithm

Authors(2) :-C. Aishwarya, J. R. Beny

Securing information from obtrudes is the miscellaneous process in communication, cryptography is an effective manner of securing the information. New architecture is designed in this paper based on Fisher Yates Shuffle algorithm to maintain secrecy of data. A newly modified magic rectangle (NMMR) is constructed based few constrains, like sum of row and column values are equal. The numerical value of data is taken and it is added with NMMR values in random position. To enhance data security iterative fisher Yates shuffle algorithm (IFYS) is designed in which, third order shuffling is carried out. IFYS-algorithm shuffles the elements in NMMR randomly, which potentially increase data security. These cipher texts are transmitter in channels through modulation techniques. This process ensures that data transfer with confidentially and integrity of the data can be improved effectively.

Authors and Affiliations

C. Aishwarya
Department of Electrical and Electronics Engineering, SNS College of Technology, Tamilnadu, India
J. R. Beny
Department of Electrical and Electronics Engineering, SNS College of Technology, Tamilnadu, India

Confidentiality, NMMR, Data Security, IFYS-Algorithm, Modulation Techniques

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Publication Details

Published in : Volume 1 | Issue 6 | November-December 2015
Date of Publication : 2015-12-30
License:  This work is licensed under a Creative Commons Attribution 4.0 International License.
Page(s) : 387-390
Manuscript Number : IJSRSET151655
Publisher : Technoscience Academy

Print ISSN : 2395-1990, Online ISSN : 2394-4099

Cite This Article :

C. Aishwarya, J. R. Beny, " Novel Architecture for Data Shuffling Using Fisher Yates Shuffle Algorithm, International Journal of Scientific Research in Science, Engineering and Technology(IJSRSET), Print ISSN : 2395-1990, Online ISSN : 2394-4099, Volume 1, Issue 6, pp.387-390, November-December-2015. Journal URL : https://res.ijsrset.com/IJSRSET151655

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