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Efficient and secure cipher scheme for multimedia contents

机译:用于多媒体内容的高效和安全密码方案

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摘要

The impact of confidentiality and privacy breaches are more pronounced when dealing with multimedia contents. One of the obvious techniques to counter these threats is the use of encryption. A number of algorithms for robust image encryption, targeted for real-time applications with tight resource constraints, has been proposed in the literature. In this paper, first, we analyze two recent cipher schemes for image contents, which are based on two rounds. We show that the schemes are designed to ensure maximum avalanche effect in the whole image by employing the chaining block code mode (CBC) in forward and backward directions. However, they do not lend themselves to parallel implementation and they have a problem with error propagation, which is not desirable for wireless multimedia transmission. As such, we propose to redesign the underlying algorithm to make it practical when used with applications that either suffer from a high error percentage or from real-time constraints. The modified cipher employs the counter mode to eliminate the chaining process (forward and backward), which allows for parallel computations and minimizes the effect of error propagation. According to the security and performance results, the proposed scheme can respond better to the applications and/or system requirements and limitations by ensuring a better performance and an equally high level of security compared to both ciphers in addition to minimum error propagation. To the best of our knowledge, the proposed scheme is the first dynamic key-dependent stream cipher scheme with a pseudo-random key-stream generation for re-ordering of sub-matrices.
机译:在处理多媒体内容时,保密性和隐私违规的影响更加明显。抵消这些威胁的明显技术之一是使用加密。在文献中提出了针对具有严格资源约束的实时应用的鲁棒图像加密的许多算法。在本文中,首先,我们分析了最近的图像内容的密码方案,其基于两轮。我们表明,该方案旨在通过在向前和向后方向上采用链式块码模式(CBC)来确保整个图像中的最大雪崩效应。但是,它们不借助并行实现,并且它们具有错误传播的问题,这对于无线多媒体传输是不可取的。因此,我们建议重新设计底层算法,以使其实用在于遇到高误差百分比或实时约束。修改的密码采用计数器模式来消除链接过程(向前和向后),其允许并行计算并最小化误差传播的效果。根据安全性和绩效结果,通过确保最小误差传播,通过确保更好的性能和同样高的安全性,该方案可以更好地响应应用程序和/或系统要求和限制。据我们所知,所提出的方案是第一种动态密钥依赖性流密码方案,其具有用于重新排序子矩阵的伪随机键流生成。

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