Chaos-Based Cryptography Theory,Algorithms and Applications /

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 des...

Πλήρης περιγραφή

Λεπτομέρειες βιβλιογραφικής εγγραφής
Συγγραφή απο Οργανισμό/Αρχή: SpringerLink (Online service)
Άλλοι συγγραφείς: Kocarev, Ljupco (Επιμελητής έκδοσης), Lian, Shiguo (Επιμελητής έκδοσης)
Μορφή: Ηλεκτρονική πηγή Ηλ. βιβλίο
Γλώσσα:English
Έκδοση: Berlin, Heidelberg : Springer Berlin Heidelberg, 2011.
Σειρά:Studies in Computational Intelligence, 354
Θέματα:
Διαθέσιμο Online:Full Text via HEAL-Link
Πίνακας περιεχομένων:
  • 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.