DocumentCode
1626711
Title
A dynamic chaotic hash function based upon circle chord methods
Author
Nouri, Moslem ; Khezeli, A. ; Ramezani, Amin ; Ebrahimi, Amir
Author_Institution
Dept. of Electr. Eng., Ghiasodin Inst. of Higher Educ., Abeyk, Iran
fYear
2012
Firstpage
1044
Lastpage
1049
Abstract
In this paper a dynamic Hash algorithm construction based on chaotic maps with controllable parameters is proposed and analyzed. Based on simplest 2-D chaotic maps, a new hash function has been proposed and analyzed in this paper. A chaos system also creates a random behavior subsequently, but at the same time a chaos system is wholly deterministic. Moreover in this paper, an algorithm for one way hash function construction based on chaos theory is introduced. The proposed hash function operates on messages with arbitrary length to produce 128 bits hash value and can be easily implemented in both hardware and software. The two core characteristics of the recommended algorithm are chaotic behaviors and parallel processing mode. The proposed algorithm contains controllable parameters dynamically obtained from the position index of the corresponding message blocks. Theoretical analysis and computer simulation indicate that the algorithm can assure all performance conditions of hash function in an efficient and flexible style and secure against several attacks, which is good choice for data integrity or authentication.
Keywords
chaos; cryptography; data integrity; parallel processing; 2D chaotic maps; chaos theory; circle chord methods; computer simulation; data authentication; data integrity; dynamic chaotic hash function; parallel processing; word length 128 bit; Algorithm design and analysis; Chaotic communication; Cryptography; Sensitivity; Spatiotemporal phenomena; Chaotic nonlinear map; Circle Chord Method; Hash function; Spatiotemporal chaos; Two-dimensional chaos map lattices; variable parameter;
fLanguage
English
Publisher
ieee
Conference_Titel
Telecommunications (IST), 2012 Sixth International Symposium on
Conference_Location
Tehran
Print_ISBN
978-1-4673-2072-6
Type
conf
DOI
10.1109/ISTEL.2012.6483140
Filename
6483140
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