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Design and ARM-embedded implementation of a chaotic secure communication scheme based on H.264 selective encryption

机译:基于H.264选择加密的混沌安全通信方案的设计与扶手实现

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摘要

In this paper, a novel video chaotic secure communication scheme and its ARM-embedded hardware implementation are investigated, based on the H.264 selective encryption and multi-core multi-process. A six-dimensional discrete-time hyperchaotic system equipped with a nonlinear nominal matrix is firstly constructed, and the corresponding chaotic encryption algorithm is then designed. During H.264 encoding, the difference components of motion vectors in both the horizontal and vertical directions, as well as the DC transform coefficients, are selectively encrypted by using such a chaotic encryption algorithm, respectively, so as to enhance the safety performance. To improve the processing speed and transmission frame rate of the whole hardware system, an ARM-based hardware platform with multi-core multi-process is further adopted to realize the H.264 selective video chaotic secure communication, where the sender collects and encrypts the original video with four-core four-process mode, and the receiver decrypts the encrypted video with three-core three-process mode, in which one core binds one process. Finally, the security performance of the designed system is tested using the TESTU01 statistical test suites and some other statistical security analysis. Both theoretical analysis and experimental results validate the feasibility and reliability of the proposed scheme.
机译:本文基于H.264选择性加密和多核多过程研究了一种新的视频混沌安全通信方案及其手臂嵌入式硬件实现。首先构建配备有非线性标称矩阵的六维离散时间超电动系统,然后设计相应的混沌加密算法。在H.264编码期间,通过使用这种混沌加密算法分别使用这种混沌加密算法选择性地加密水平和垂直方向上的运动矢量的差分量,从而提高安全性能。为了提高整个硬件系统的处理速度和传输帧速率,进一步采用了一种具有多核多过程的基于ARM的硬件平台来实现H.264选择性视频混沌安全通信,发送者收集和加密原始视频具有四核四流程模式,接收器用三核三个过程模式解密加密视频,其中一个核心绑定一个过程。最后,使用Testu01统计测试套件和一些其他统计安全分析测试设计系统的安全性能。理论分析和实验结果都验证了所提出的方案的可行性和可靠性。

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