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Confidentiality of a selectively encrypted H.264 coded video bit-stream

机译:选择性加密的H.264编码视频比特流的机密性

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It is an assumption that selective encryption does not strongly protect confidentiality owing to the partial visibility of some video data. This is because, though encryption keys may be difficult to derive, an enhanced version of selectively encrypted video sequence might be found from knowledge of the unencrypted parts of the sequence. An efficient selective encryption method for syntax elements of H.264 encoded video was recently proposed at the entropy coding stage of an H.264 encoder. Using this recent scheme as an example, the purpose of this paper is a comprehensive cryptanalysis of selectively encrypted H.264 bit-streams to contradict the previous assumption that selective encryption is vulnerable. The novel cryptanalysis methods presented in this paper analyze the ability of an attacker to improve the quality of the encrypted video stream to make it watchable. The conclusion is drawn that if the syntax elements for selective encryption are chosen using statistical and structural characteristics of the video, then the selective encryption method is secure. The cryptanalysis is performed by taking into account the probability distribution of syntax elements within the video sequence, the relationship of syntax elements with linear regression analysis and the probability of successfully attacking them in order to enhance the visual quality. The results demonstrate the preservation of distorted video quality even after considering many possible attacks on: the whole video sequence; each video frame; and on small video segments known as slices.
机译:假设由于某些视频数据的部分可见性,选择性加密不能强烈保护机密性。这是因为,尽管可能很难得出加密密钥,但是可以从对序列的未加密部分的了解中找到选择性加密的视频序列的增强版本。最近在H.264编码器的熵编码阶段提出了一种有效的H.264编码视频语法元素的选择性加密方法。以这种最新方案为例,本文的目的是对选择性加密的H.264比特流进行全面的密码分析,以与先前认为选择性加密易受攻击的假设相抵触。本文提出的新颖的密码分析方法分析了攻击者提高加密视频流的质量以使其可观看的能力。得出的结论是,如果使用视频的统计和结构特征来选择用于选择性加密的语法元素,那么选择性加密方法是安全的。通过考虑视频序列中语法元素的概率分布,语法元素与线性回归分析的关系以及成功攻击它们以提高视觉质量的概率,来执行密码分析。结果表明,即使考虑了许多可能的攻击之后,仍可以保持失真的视频质量。每个视频帧;以及称为片段的小型视频片段上

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