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Novel image compression-encryption hybrid algorithm based on key-controlled measurement matrix in compressive sensing

机译:基于键控测量矩阵的压缩感知图像压缩加密混合算法

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摘要

The existing ways to encrypt images based on compressive sensing usually treat the whole measurement matrix as the key, which renders the key too large to distribute and memorize or store. To solve this problem, a new image compression-encryption hybrid algorithm is proposed to realize compression and encryption simultaneously, where the key is easily distributed, stored or memorized. The input image is divided into 4 blocks to compress and encrypt, then the pixels of the two adjacent blocks are exchanged randomly by random matrices. The measurement matrices in compressive sensing are constructed by utilizing the circulant matrices and controlling the original row vectors of the circulant matrices with logistic map. And the random matrices used in random pixel exchanging are bound with the measurement matrices. Simulation results verify the effectiveness, security of the proposed algorithm and the acceptable compression performance.
机译:现有的基于压缩感测来加密图像的方法通常将整个测量矩阵视为密钥,这使得密钥太大而无法分发和存储。为了解决这个问题,提出了一种新的图像压缩-加密混合算法,可以同时实现压缩和加密,密钥易于分配,存储或存储。将输入图像分为4个块进行压缩和加密,然后通过随机矩阵随机交换两个相邻块的像素。利用循环矩阵并利用逻辑映射图控制循环矩阵的原始行向量,构造了压缩感知中的测量矩阵。并且在随机像素交换中使用的随机矩阵与测量矩阵绑定。仿真结果验证了所提算法的有效性,安全性和可接受的压缩性能。

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