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  5. A Practical Realization of a Return Map Immune Lorenz Based Chaotic Stream Cipher in Circuitry
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A Practical Realization of a Return Map Immune Lorenz Based Chaotic Stream Cipher in Circuitry

Date Issued
May 1, 2017
Author(s)
Brown, Daniel Robert  
Advisor(s)
Donatello Materassi
Additional Advisor(s)
Seddik Djouadi
Nicole McFarlane
Max Schuchard
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/40899
Abstract

Some chaotic systems are advantageously capable of self-synchronizing with a like system through a single shared state. Using a plain text binary message, a single system parameter can be modulated to mask this message and transmit it securely through the single shared state. The most simple implementations of this encryption technique are, however, vulnerable to the return map attack. Using a time-scaling factor to further obfuscate the modulation process, a return map attack immunity is gained. We report on the progress towards a realization of this process in real-time analog circuitry using off-the-shelf components.

Subjects

chaos

chaotic encryption

communication

non linear system

Disciplines
Controls and Control Theory
Electrical and Electronics
Systems and Communications
Degree
Master of Science
Major
Electrical Engineering
Embargo Date
January 1, 2011
File(s)
Thumbnail Image
Name

BrownThesis_Final.pdf

Size

5.8 MB

Format

Adobe PDF

Checksum (MD5)

0ac8779e5c0ae0c7a69acc5dc9bed23d


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