Chaos-Based Cryptography [electronic resource] : Theory,Algorithms and Applications / edited by Ljupco Kocarev, Shiguo Lian.

By: Kocarev, Ljupco [editor.]Contributor(s): Lian, Shiguo [editor.] | SpringerLink (Online service)Material type: TextTextLanguage: English Series: Studies in Computational Intelligence: 354Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2011Description: X, 390p. 161 illus., 67 illus. in color. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9783642205422Subject(s): Engineering | Data structures (Computer science) | Data encryption (Computer science) | Artificial intelligence | Engineering | Computational Intelligence | Artificial Intelligence (incl. Robotics) | Data Encryption | Data Structures, Cryptology and Information TheoryAdditional physical formats: Printed edition:: No titleDDC classification: 006.3 LOC classification: Q342Online resources: Click here to access online
Contents:
1. Introduction to Chaos --     2. Chaos-based Cryptography   3. Digitized Chaos for Pseudo-Random Number Generation in Cryptography   --     4. Formation of High-Dimensional Chaotic Maps and Their Uses in Cryptography   --     5. Chaos based hash function --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     4. Formation of High-Dimensional Chaotic Maps and Their Uses in Cryptography   --     5. Chaos based hash function --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     5. Chaos based hash function --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms.
In: Springer eBooksSummary: Chaos-based cryptography, attracting many researchers in the past decade, is a research field across two fields, i.e., chaos (nonlinear dynamic system) and cryptography (computer and data security). It Chaos' properties, such as randomness and ergodicity, have been proved to be suitable for designing the means for data protection.   The book gives a thorough description of chaos-based cryptography, which consists of chaos basic theory, chaos properties suitable for cryptography, chaos-based cryptographic techniques, and various secure applications based on chaos. Additionally, it covers both the latest research results and some open issues or hot topics.   The book creates a collection of high-quality chapters contributed by leading experts in the related fields. It embraces a wide variety of aspects of the related subject areas and provide a scientifically and scholarly sound treatment of state-of-the-art techniques to students, researchers, academics, personnel of law enforcement and IT practitioners who are interested or involved in the study, research, use, design and development of techniques related to chaos-based cryptography.  
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1. Introduction to Chaos --     2. Chaos-based Cryptography   3. Digitized Chaos for Pseudo-Random Number Generation in Cryptography   --     4. Formation of High-Dimensional Chaotic Maps and Their Uses in Cryptography   --     5. Chaos based hash function --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     4. Formation of High-Dimensional Chaotic Maps and Their Uses in Cryptography   --     5. Chaos based hash function --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     5. Chaos based hash function --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms --     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     6. Chaos-Based Video Encryption Algorithms   --     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms     7. Cryptanalysis of chaotic ciphers   -- 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms 8. Lessons learnt from the cryptanalysis of chaos-based ciphers   --   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms   9. Hardware Implementation of chaos based cipher: Design of embedded systems for security applications   --   10. Hardware implementation of chaos-secured optical communication systems   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms   --     11. Performance Evaluation of Chaotic and Conventional Encryption on Portable and Mobile Platforms.

Chaos-based cryptography, attracting many researchers in the past decade, is a research field across two fields, i.e., chaos (nonlinear dynamic system) and cryptography (computer and data security). It Chaos' properties, such as randomness and ergodicity, have been proved to be suitable for designing the means for data protection.   The book gives a thorough description of chaos-based cryptography, which consists of chaos basic theory, chaos properties suitable for cryptography, chaos-based cryptographic techniques, and various secure applications based on chaos. Additionally, it covers both the latest research results and some open issues or hot topics.   The book creates a collection of high-quality chapters contributed by leading experts in the related fields. It embraces a wide variety of aspects of the related subject areas and provide a scientifically and scholarly sound treatment of state-of-the-art techniques to students, researchers, academics, personnel of law enforcement and IT practitioners who are interested or involved in the study, research, use, design and development of techniques related to chaos-based cryptography.  

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