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A semi-symmetric image encryption scheme based on the function projective synchronization of two hyperchaotic systems

机译:基于两个超混沌系统的函数投影同步的半对称图像加密方案

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摘要

Both symmetric and asymmetric color image encryption have advantages and disadvantages. In order to combine their advantages and try to overcome their disadvantages, chaos synchronization is used to avoid the key transmission for the proposed semi-symmetric image encryption scheme. Our scheme is a hybrid chaotic encryption algorithm, and it consists of a scrambling stage and a diffusion stage. The control law and the update rule of function projective synchronization between the 3-cell quantum cellular neural networks (QCNN) response system and the 6th-order cellular neural network (CNN) drive system are formulated. Since the function projective synchronization is used to synchronize the response system and drive system, Alice and Bob got the key by two different chaotic systems independently and avoid the key transmission by some extra security links, which prevents security key leakage during the transmission. Both numerical simulations and security analyses such as information entropy analysis, differential attack are conducted to verify the feasibility, security, and efficiency of the proposed scheme.
机译:对称和非对称彩色图像加密都具有优点和缺点。为了结合它们的优点并试图克服它们的缺点,对于所提出的半对称图像加密方案,使用混沌同步来避免密钥传输。我们的方案是一种混合混沌加密算法,由加扰阶段和扩散阶段组成。制定了三细胞量子细胞神经网络(QCNN)响应系统与六阶细胞神经网络(CNN)驱动系统之间的功能投影同步控制律和更新规则。由于使用功能投影同步来使响应系统和驱动系统同步,因此Alice和Bob分别通过两个不同的混沌系统获取了密钥,并避免了通过一些额外的安全链路进行密钥传输,从而防止了安全密钥在传输期间泄漏。通过数值仿真和安全分析,如信息熵分析,差分攻击,验证了该方案的可行性,安全性和有效性。

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