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Compressed Sensing Based Selective Encryption With Data Hiding Capability

机译:基于压缩的感测基于数据隐藏能力的选择性加密

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摘要

This paper proposes a joint selective encryption and data hiding scheme based on compressed sensing (CS), with a focus to its application in secure imaging. Specifically, working with a semantic-secure stream cipher, we suggest to selectively encrypt the sign bits of the CS measurements during its quantization stage and insert the authentication information using a nonseparable histogram-shifting based data hiding scheme. The rationale behind the sign encryption is that CS measurements, when measured by random subspace projection, is random in nature and thus, from both theoretical and experimental points of view, the mean squared errors associated with authorized users and attackers are significant. Due to the indistinguishability of the output ciphertext and the nonlinearity of the CS decoder, it is robust, when comparing with the existing selective encryption system of multimedia data, against known error concealment attacks. When applied in imaging, we demonstrate that it could effectively degrade the visual quality level while saving the computation load by at least $90%$. Moreover, we further show that a state-of-the-art data hiding system can be seamlessly incorporated into the sign encryption, thus allowing soft data authentication without heavy computation. The proposed scheme is expected to strengthen the security of applications in the field where both energy and privacy are the concerns, such as sensitive information protection for multimedia data in wireless sensor networks.
机译:本文提出了一种基于压缩感测(CS)的联合选择性加密和数据隐藏方案,其焦点在其在安全成像中的应用。具体地,使用语义安全流密码,我们建议在其量化阶段期间选​​择性地加密CS测量的符号比特,并使用基于非可分解的直方图转换的数据隐藏方案插入认证信息。符号加密后面的基本原理是CS测量,当通过随机子空间投影测量时,随机地是随机的,因此,来自理论和实验观点,与授权用户和攻击者相关的平均平均误差是重要的。由于输出密文和CS解码器的非线性的无法区分,当与现有的多媒体数据的选择性加密系统进行比较时,它是坚固的,而是针对已知的错误隐藏攻击。当应用于成像时,我们证明它可以有效地降低视觉质量水平,同时将计算负载节省至少90 000 %$。此外,我们进一步示出了最先进的数据隐藏系统可以无缝地结合到标志加密中,从而允许软数据认证而没有重大计算。预计拟议计划将加强能源和隐私的领域中申请的安全性,例如无线传感器网络中多媒体数据的敏感信息保护。

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