Research on Video Encryption Technology Based on Cross Coupled Map Lattices System

Hao-Qiang Xu Hao-Qiang Xu, Jian-Dong Liu Hao-Qiang Xu
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Abstract

The traditional video encryption algorithm only encrypts video images, which has the problems of an extended time-consuming algorithm and poor format retention. To improve the efficiency of video encryption, this paper proposes a multi-link selective video encryption algorithm based on the Cross Coupled Map Lattices system by combining H.264/AVC video coding structure. The algorithm reduces the amount of encrypted data while ensuring encryption security to satisfy the needs of video encryption security and real-time performance. The encryption algorithm’s security and visual encryption effect are analyzed subjectively and objectively. The experimental results show that the encryption scheme has an excellent visual encryption effect and strong attack resistance, the encryption time consumption is low, and the video format remains unchanged. It can be applied to real-time video encryption occasions such as video conferences.  
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基于交叉耦合映射格系统的视频加密技术研究
传统的视频加密算法仅对视频图像进行加密,存在算法耗时长、格式保留性差等问题。为了提高视频加密的效率,结合H.264/AVC视频编码结构,提出了一种基于交叉耦合映射格系统的多链路选择性视频加密算法。该算法在保证加密安全性的同时减少了加密数据量,满足视频加密安全性和实时性的需要。对加密算法的安全性和可视化加密效果进行了主客观分析。实验结果表明,该加密方案具有良好的视觉加密效果和较强的抗攻击能力,加密耗时低,且视频格式保持不变。可应用于视频会议等实时视频加密场合。
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