• DocumentCode
    37778
  • Title

    Design and ARM-Embedded Implementation of a Chaotic Map-Based Real-Time Secure Video Communication System

  • Author

    Zhuosheng Lin ; Simin Yu ; Jinhu Lu ; Shuting Cai ; Guanrong Chen

  • Author_Institution
    Coll. of Autom., Guangdong Univ. of Technol., Guangzhou, China
  • Volume
    25
  • Issue
    7
  • fYear
    2015
  • fDate
    Jul-15
  • Firstpage
    1203
  • Lastpage
    1216
  • Abstract
    A systematic methodology is proposed for a chaotic map-based real-time video encryption and decryption system with advanced Reduced Instruction Set Computer machine (ARM)-embedded hardware implementation. According to the anticontrol principle of dynamical systems, first, an 8-D discretetime chaotic map-based system is constructed, which possesses the required property of 1-1 surjection in the integer range [0, N - 1], where N is the number of frame pixels, suitable for position scrambling of each video frame. Then, an 8-D discretetime hyperchaotic system is designed for encryption-decryption of red, green, and blue (RGB) tricolor pixel values. Using the ARM-embedded platform super4412 model with Cortex-A9 processor, together with the standard QT cross-platform, an integrated chaotic map-based real-time secure video communication system is designed, implemented, and evaluated. In addition, the security performance of the designed system is tested using criteria from the National Institute of Standards and Technology statistical test suite. The main feature of this method is that, both scrambling-antiscrambling of RGB tricolor pixel positions and encryption-decryption of pixel values are realized simultaneously for enhancing the security. As is well known, compared with numerical simulations, hardware implementation for such a secure video communication system is very difficult to achieve, but we successfully implemented and tested in a real-world network environment. Both theoretical analysis and experimental results validate the feasibility and real-time performance of the new secure video communication system.
  • Keywords
    chaotic communication; cryptography; image colour analysis; image resolution; microprocessor chips; real-time systems; statistical testing; telecommunication security; video communication; video signal processing; 1-1 surjection property; 8D discrete time chaotic map-based system; 8D discrete time hyperchaotic system; ARM-embedded hardware implementation; Cortex-A9 processor; National Institute of Standards and Technology statistical test suite; QT cross-platform; advanced reduced instruction set computer machine; anti control principle; chaotic map-based real-time secure video communication system; chaotic map-based real-time video decryption system; chaotic map-based real-time video encryption system; frame pixels; integer range; red-green-and-blue tricolor pixel value; super4412 model; video frame; Chaotic communication; Encryption; Hardware; Real-time systems; Streaming media; ARM-embedded implementation; Advanced Reduced Instruction Set Computer (RISC) machine (ARM)-embedded implementation; Chaotic map; chaotic map; real-time secure video communication;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems for Video Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8215
  • Type

    jour

  • DOI
    10.1109/TCSVT.2014.2369711
  • Filename
    6954438