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A hybrid security strategy (HS2) for reliable video streaming in fog computing

机译:用于雾计算中可靠视频流的混合安全策略(HS2)

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摘要

Recently, digital communication and storage over the Internet through the cloud have increased in a rapid manner. Accordingly, data security becomes a vital issue as there are many hackers who want to steal or alter others' private data. Fog computing comes to secure and facilitate the connection to the cloud. It works as an intermediary between the cloud and the peripheral devices. Accordingly, the channel between the fog and those devices must be secured against attacks. Many efforts have been done to secure the fog through the use of steganography to embed important data into a cover digital medium and cryptography to encrypt the data into a meaningless form. As steganography and cryptography have their own advantages, combining them into a hybrid system will certainly promote the security level. Video steganography uses video as a cover media for hiding secret data as video streaming over internet is very popular and common that cannot be doubted by intruders. The advantage of using video files as a cover is that they are more secure against hacker attacks due to their relative complexity compared to other multimedia types and the data redundancy which permits to embed large amount of secret data. In this paper a new hybrid security strategy (HS2) merging the advantages of both cryptography and steganography for securing the fog has been proposed. HS2 embeds a secret image into a video .mp4 as the host medium. HS2 has two main contributions. The first is a new encryption technique that depends on alpha-blocks of linear feedback shift registers (LFSRs) merged with an adder/subtractor to generate a strong secret key for each block. All blocks outputs are combined using a nonlinear function to construct the final key. Such generated key will be XORed with the secret image to produce the encrypted secret image. The second contribution is a new steganography methodology based on an enhanced discrete wavelet packet transform (DWPT) to embed the encrypted secret image into a cover video. Experimental results and security analysis have shown that the proposed HS2 outperforms recent security strategies and resist common attacks when applied to the fog environment.
机译:最近,通过云通过互联网进行的数字通信和存储已迅速增加。因此,由于许多黑客想要窃取或更改他人的私有数据,因此数据安全性成为至关重要的问题。雾计算可以保护并促进与云的连接。它充当云和外围设备之间的中介。因此,必须确保雾气与那些设备之间的通道不受攻击。通过使用隐写术将重要数据嵌入掩盖的数字媒体中以及使用密码术将数据加密成毫无意义的形式,已经做了很多努力来确保雾化。由于隐写术和加密术各有优势,因此将它们组合到混合系统中肯定会提高安全性。视频隐写术使用视频作为掩盖媒体来隐藏秘密数据,因为互联网上的视频流非常流行并且很常见,入侵者对此毫无疑问。使用视频文件作为封面的优点是,与其他多媒体类型相比,由于视频文件相对复杂,并且可以嵌入大量机密数据,因此它们具有更高的安全性,可抵御黑客攻击。在本文中,提出了一种新的混合安全策略(HS2),该策略融合了密码学和隐写术两者的优点来保护雾。 HS2将秘密图像嵌入到视频.mp4中作为宿主介质。 HS2有两个主要贡献。第一种是一种新的加密技术,该技术依赖于线性反馈移位寄存器(LFSR)的alpha块与加法器/减法器合并以为每个块生成强密钥。使用非线性函数组合所有块输出,以构造最终键。将这种生成的密钥与秘密图像进行异或运算以生成加密的秘密图像。第二个贡献是基于增强的离散小波包变换(DWPT)的新隐写方法,可将加密的秘密图像嵌入到封面视频中。实验结果和安全性分析表明,所提出的HS2优于最新的安全策略,并且在应用于雾天环境时可以抵抗常见的攻击。

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