Implementing a Chaotic Cryptosystem by Performing Parallel Computing on Embedded Systems with Multiprocessors

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Detaylı Bibliyografya
Yayımlandı:Entropy vol. 21, no. 3 (2019), p. 268
Yazar: Flores-Vergara, Abraham
Diğer Yazarlar: Inzunza-González, Everardo, García-Guerrero, Enrique Efren, López-Bonilla, Oscar Roberto, Rodríguez-Orozco, Eduardo, Juan Miguel Hernández-Ontiveros, Cárdenas-Valdez, José Ricardo, Tlelo-Cuautle, Esteban
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MDPI AG
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024 7 |a 10.3390/e21030268  |2 doi 
035 |a 2548394788 
045 2 |b d20190101  |b d20191231 
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100 1 |a Flores-Vergara, Abraham  |u UABC, Engineering, Architecture and Design Faculty, 22860 Ensenada, Mexico; ITE, Department of Electrical and Electronic Engineering, Ensenada Institute of Technology, 22780 Ensenada, Mexico 
245 1 |a Implementing a Chaotic Cryptosystem by Performing Parallel Computing on Embedded Systems with Multiprocessors 
260 |b MDPI AG  |c 2019 
513 |a Journal Article 
520 3 |a Profiling and parallel computing techniques in a cluster of six embedded systems with multiprocessors are introduced herein to implement a chaotic cryptosystem for digital color images. The proposed encryption method is based on stream encryption using a pseudo-random number generator with high-precision arithmetic and data processing in parallel with collective communication. The profiling and parallel computing techniques allow discovery of the optimal number of processors that are necessary to improve the efficiency of the cryptosystem. That is, the processing speed improves the time for generating chaotic sequences and execution of the encryption algorithm. In addition, the high numerical precision reduces the digital degradation in a chaotic system and increases the security levels of the cryptosystem. The security analysis confirms that the proposed cryptosystem is secure and robust against different attacks that have been widely reported in the literature. Accordingly, we highlight that the proposed encryption method is potentially feasible to be implemented in practical applications, such as modern telecommunication devices employing multiprocessors, e.g., smart phones, tablets, and in any embedded system with multi-core hardware. 
653 |a Digital imaging 
653 |a Data processing 
653 |a Tablet computers 
653 |a Security 
653 |a Chaos theory 
653 |a Color imagery 
653 |a Telecommunications systems 
653 |a Multiprocessing 
653 |a Efficiency 
653 |a Generators 
653 |a Random numbers 
653 |a Programming languages 
653 |a Computers 
653 |a Embedded systems 
653 |a Smartphones 
653 |a Personal computers 
653 |a Telephones 
653 |a Algorithms 
653 |a Data encryption 
653 |a Robustness (mathematics) 
653 |a Pseudorandom 
653 |a Internet of Things 
700 1 |a Inzunza-González, Everardo  |u UABC, Engineering, Architecture and Design Faculty, 22860 Ensenada, Mexico 
700 1 |a García-Guerrero, Enrique Efren  |u UABC, Engineering, Architecture and Design Faculty, 22860 Ensenada, Mexico 
700 1 |a López-Bonilla, Oscar Roberto  |u UABC, Engineering, Architecture and Design Faculty, 22860 Ensenada, Mexico 
700 1 |a Rodríguez-Orozco, Eduardo  |u ITE, Department of Electrical and Electronic Engineering, Ensenada Institute of Technology, 22780 Ensenada, Mexico 
700 1 |a Juan Miguel Hernández-Ontiveros  |u CBTIS, Industrial Technological and Services Baccalaureate Center, 82017 Mazatlan, Mexico 
700 1 |a Cárdenas-Valdez, José Ricardo  |u ITT, Department of Electrical and Electronic Engineering, Tijuana Institute of Technology, 22435 Tijuana, Mexico 
700 1 |a Tlelo-Cuautle, Esteban  |u INAOE, Department of Electronics, 72840 Puebla, Mexico 
773 0 |t Entropy  |g vol. 21, no. 3 (2019), p. 268 
786 0 |d ProQuest  |t Engineering Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/2548394788/abstract/embedded/6A8EOT78XXH2IG52?source=fedsrch 
856 4 0 |3 Full Text + Graphics  |u https://www.proquest.com/docview/2548394788/fulltextwithgraphics/embedded/6A8EOT78XXH2IG52?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/2548394788/fulltextPDF/embedded/6A8EOT78XXH2IG52?source=fedsrch