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Image Size Invariant Visual Cryptography for General Access Structures Subject to Display Quality Constraints

机译:受显示质量约束的通用访问结构的图像大小不变视觉密码术

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Conventional visual cryptography (VC) suffers from a pixel-expansion problem, or an uncontrollable display quality problem for recovered images, and lacks a general approach to construct visual secret sharing schemes for general access structures. We propose a general and systematic approach to address these issues without sophisticated codebook design. This approach can be used for binary secret images in non-computer-aided decryption environments. To avoid pixel expansion, we design a set of column vectors to encrypt secret pixels rather than using the conventional VC-based approach. We begin by formulating a mathematic model for the VC construction problem to find the column vectors for the optimal VC construction, after which we develop a simulated-annealing-based algorithm to solve the problem. The experimental results show that the display quality of the recovered image is superior to that of previous papers.
机译:常规的视觉密码术(VC)遭受像素扩展问题或恢复图像无法控制的显示质量问题,并且缺乏为通用访问结构构造视觉秘密共享方案的通用方法。我们提出了一种通用而系统的方法来解决这些问题,而无需进行复杂的代码本设计。此方法可用于非计算机辅助解密环境中的二进制秘密映像。为了避免像素扩展,我们设计了一组列向量来加密秘密像素,而不是使用传统的基于VC的方法。我们首先为VC构建问题建立一个数学模型,以找到用于最佳VC构建的列向量,然后我们开发一种基于模拟退火的算法来解决该问题。实验结果表明,所恢复图像的显示质量优于以前的论文。

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