Hybrid Method to Implement a Parallel Search of the Cryptosystem Keys
Title | Hybrid Method to Implement a Parallel Search of the Cryptosystem Keys |
Publication Type | Conference Paper |
Year of Publication | 2019 |
Authors | Sadkhan, Sattar B., Yaseen, Basim S. |
Conference Name | 2019 International Conference on Advanced Science and Engineering (ICOASE) |
Date Published | apr |
ISBN Number | 978-1-5386-9343-8 |
Keywords | basic encryption key, binary equations system, binary sequences, biocomputing, character files, Ciphers, composability, compositionality, counter value, cryptanalysis, cryptography, cryptosystem keys, DNA, DNA computing, DNA strands, final key sequence mechanism, GA, GA environments, Generators, genetic algorithms, interconnected sequence parts, Interconnected sequences, LFSR, Mathematical model, parallel processing, parallel search, parallelism, pubcrawl, sequences recognition mechanism, successive cipher characters, theoretical cryptography, theoretical principles, three-level contributions |
Abstract | The current paper proposes a method to combine the theoretical concepts of the parallel processing created by the DNA computing and GA environments, with the effectiveness novel mechanism of the distinction and discover of the cryptosystem keys. Three-level contributions to the current work, the first is the adoption of a final key sequence mechanism by the principle of interconnected sequence parts, the second to exploit the principle of the parallel that provides GA in the search for the counter value of the sequences of the challenge to the mechanism of the discrimination, the third, the most important and broadening the breaking of the cipher, is the harmony of the principle of the parallelism that has found via the DNA computing to discover the basic encryption key. The proposed method constructs a combined set of files includes binary sequences produced from substitution of the guess attributes of the binary equations system of the cryptosystem, as well as generating files that include all the prospects of the DNA strands for all successive cipher characters, the way to process these files to be obtained from the first character file, where extract a key sequence of each sequence from mentioned file and processed with the binary sequences that mentioned the counter produced from GA. The aim of the paper is exploitation and implementation the theoretical principles of the parallelism that providing via biological environment with the new sequences recognition mechanism in the cryptanalysis. |
URL | https://ieeexplore.ieee.org/document/8723770 |
DOI | 10.1109/ICOASE.2019.8723770 |
Citation Key | sadkhan_hybrid_2019 |
- parallel search
- GA environments
- Generators
- genetic algorithms
- interconnected sequence parts
- Interconnected sequences
- LFSR
- Mathematical model
- parallel processing
- GA
- parallelism
- pubcrawl
- sequences recognition mechanism
- successive cipher characters
- theoretical cryptography
- theoretical principles
- three-level contributions
- basic encryption key
- final key sequence mechanism
- DNA strands
- DNA computing
- DNA
- cryptosystem keys
- Cryptography
- cryptanalysis
- counter value
- Compositionality
- composability
- Ciphers
- character files
- biocomputing
- binary sequences
- binary equations system