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Joint image compression-encryption scheme using entropy coding and compressive sensing

机译:使用熵编码和压缩感测的联合图像压缩加密方案

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摘要

Recently, compressive sensing (CS)-based joint compression-encryption schemes have been widely investigated due to their high efficiency and good security for images. However, the existing schemes typically have a lower compression ratio (CR), and there may be a flaw during their compression processes. Therefore, in this paper, according to the intrinsic features of images, we propose a novel compression architecture to enhance the CR. Meanwhile, based on this architecture, a joint image compression-encryption scheme using entropy coding and CS is designed to implement a complete compression and encryption process. In this joint scheme, a presented bit-level lossless compression-encryption algorithm based on entropy coding for the higher bit-planes is incorporated to improve the quality of the reconstructed image and ensure the security. Alternately, this joint scheme also contains an improved CS-based lossy compression-encryption algorithm for the lower bit-planes, which can guarantee the efficiency and security. Through the cooperation between the proposed lossless and lossy coding, the higher reconstruction performance can be achieved. SHA-256 is combined with all initial keys in the proposed joint scheme to generate the updated keys for chaos cryptosystem to maintain high security and resist some common attacks. Experimental and analytical results illustrate the superiority of the proposed joint scheme compared with the existing compression-encryption schemes and JPEG, as well as good encryption performance.
机译:最近,基于压缩感应(CS)的关节压缩加密方案已被广泛调查,因为它们的高效率和图像的良好安全性。然而,现有方案通常具有较低的压缩比(Cr),并且在其压缩过程中可能存在缺陷。因此,本文根据图像的内在特征,我们提出了一种新型压缩架构来增强CR。同时,基于该架构,设计使用熵编码和CS的联合图像压缩加密方案来实现完整的压缩和加密过程。在该联合方案中,基于熵编码的呈现比特级无损压缩加密算法,以提高重建图像的质量并确保安全性。或者,该联合方案还包含一个改进的基于CS的有损压缩加密算法,用于低位平面,可以保证效率和安全性。通过拟议的无损和有损编码之间的合作,可以实现更高的重建性能。 SHA-256与所提出的联合方案中的所有初始密钥相结合,以生成混沌密码系统的更新键,以保持高安全性并抵制一些常见的攻击。实验和分析结果说明了与现有的压缩加密方案和JPEG相比,所提出的联合方案的优越性,以及良好的加密性能。

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