Design of new scan orders for perceptual encryption of H.264/AVC videos

Xiangling Ding, Y. Deng, Gaobo Yang, Yun Song, Dajiang He, Xingming Sun
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引用次数: 10

Abstract

In this study, a perceptual encryption algorithm is proposed for H.264/AVC video to enhance the scrambling effect and encryption space. Six new scan orders are designed for H.264/AVC encoder by analysing the energy distribution of discrete cosine transform coefficients. They are proven to have similar performance as the conventional zigzag scan order and its symmetrical scan order. These six new scan orders are combined with two existing scan orders to design a scan-order based perceptual encryption algorithm. Specifically, video encryption is achieved more specifically by randomly selecting one scan order from the eight scan orders with a security key, and the sign bit flipping of DC coefficients is also incorporated to further increase the encryption space. Experimental results show that the proposed approach has the advantages of both low bitrate increase and low computational cost. Furthermore, it is more flexible and has stronger security than the existing scan-order based video encryption schemes.
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H.264/AVC视频感知加密新扫描顺序设计
为了提高H.264/AVC视频的置乱效果和加密空间,本文提出了一种感知加密算法。通过分析离散余弦变换系数的能量分布,为H.264/AVC编码器设计了6种新的扫描阶数。实验证明,它们具有与传统之字形扫描顺序及其对称扫描顺序相似的性能。将这六个新的扫描顺序与两个现有的扫描顺序相结合,设计了一个基于扫描顺序的感知加密算法。具体来说,视频加密是通过使用安全密钥从8个扫描顺序中随机选择一个扫描顺序来实现的,并且还采用了DC系数的符号位翻转来进一步增加加密空间。实验结果表明,该方法具有比特率增长小、计算成本低的优点。与现有的基于扫描顺序的视频加密方案相比,该方案具有更大的灵活性和更强的安全性。
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