RSA ALGORITHM IN FRACTIONAL-RATIONAL N-ARY FORMS WHILE ENCRYPTION-DECRYPTION OF MONOCHROME IMAGES

A. Kovalchuk, Nataliia Kustra, S. Yatsyshyn
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Abstract

The basis for image protection is the assumption that the image is a stochastic signal. But the image is a specific signal that possesses, in addition to typical informativeness (informativeness of data), also visual informativeness, which brings new challenges to the issue of protection. Therefore, the urgent task is to implement such application of the RSA algorithm that when encrypting an image: – the cryptographic stability of the RSA algorithm did not deteriorate; – achieves full image noise to prevent the use of visual image processing methods. An algorithm for encryption-decryption of monochrome images in fractional-rational forms of order n using the elements of the RSA algorithm is proposed, as the most resistant to unauthorized decryption of signals. The proposed algorithm is applied to images with strictly separated contours. Elements of the RSA algorithm are applied to construct the coefficients of fractional-rational affine transformations. The developed algorithm is inherent in the higher cryptographic stability compared to the ordinary RSA algorithm. The possibilities of using the elements of the RSA algorithm in affine transformations while encrypting and decrypting images are described. The results of encryption modeling for cryptographic transformations of monochrome images of a given dimension are given. Modified models and algorithmic procedures of key formation processes, direct and inverse cryptographic transformations, reduced to mathematical element-by-element operations, have been developed.
单色图像加解密时的分数-有理n元Rsa算法
图像保护的基础是假设图像是随机信号。但图像作为一种特殊的信号,除了具有典型的信息性(数据的信息性)外,还具有视觉信息性,这给保护问题带来了新的挑战。因此,实现RSA算法在加密图像时的应用:—RSA算法的加密稳定性不变差;-实现全图像噪声防止使用视觉图像处理方法。提出了一种利用RSA算法的元素对n阶分数-有理形式的单色图像进行加解密的算法,该算法是最能抵抗未经授权的信号解密的算法。该算法适用于具有严格分离轮廓的图像。利用RSA算法中的元素来构造分数有理仿射变换的系数。与普通的RSA算法相比,所开发的算法具有更高的密码稳定性。描述了在加密和解密图像时在仿射变换中使用RSA算法元素的可能性。给出了给定维数的单色图像的加密变换的加密建模结果。改进的模型和算法程序的密钥形成过程,直接和反向密码变换,简化为数学元素逐个元素的操作,已经发展。
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