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Image compression and encryption scheme with hyper-chaotic system and mean error control

机译:具有超混沌系统的图像压缩和加密方案,均值误差控制

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摘要

Based on a hyper-chaotic system, an image compression and encryption scheme is presented by adopting mean error control to improve the quantization compression performance of the discrete cosine transform (DCT) coefficients. The transform coefficients of DCT forming a structure similar to the sub-band can be classified and encoded. Then the image is scanned with Zigzag operation in different directions to achieve sufficiently scrambled effects. The cyclic shift matrix for image encryption is generated by the hyper-chaotic system. The four initial inputs for generating the cyclic shift matrix serve as the key. Simulation results demonstrate the security and the effectiveness of the proposed image compression and encryption scheme.
机译:基于超混沌系统,通过采用平均误差控制来提高图像压缩和加密方案来提高离散余弦变换(DCT)系数的量化压缩性能。 形成类似于子带类似的结构的变换系数可以分类和编码。 然后在不同方向上用Zigzag操作扫描图像以实现足够的扰动效果。 用于图像加密的循环移位矩阵由超混沌系统生成。 用于生成循环移位矩阵的四个初始输入用作键。 仿真结果证明了所提出的图像压缩和加密方案的安全性和有效性。

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