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Asymmetric encryption algorithm for colour images based on fractional Hartley transform

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TLDR
A new scheme for encryption of single-channel colour images using amplitude- and phase-truncation approach to introduce non-linearity for enhanced security and it is shown that the proposed scheme resists the special attack.
Abstract
This paper presents a new scheme for encryption of single-channel colour images. The scheme uses amplitude- and phase-truncation approach to introduce non-linearity for enhanced security. Further, the colour image encryption is performed in the fractional Hartley domain, which is relatively less investigated. The encryption starts with an affine transform of each channel of the input colour image. Thereafter, one of the channels is considered as the input amplitude image while the other two are used as phase masks, one in the spatial and the other in the frequency domain. A detailed analysis of the scheme’s sensitivity to various encryption parameters has been carried out. In addition, security analysis of the scheme against attacks establishes the scheme’s robustness. The combined use of the affine transform and phase-truncation approach for colour image encryption in the fractional Hartley domain is attempted for the first time in this study. It is shown that the proposed scheme resists the spec...

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Citations
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Journal ArticleDOI

An asymmetric image encryption mechanism using QR decomposition in hybrid multi-resolution wavelet domain

TL;DR: The proposed encryption system exhibits non-linearity and enlarged key-space to dodge any brute-force attack and the results obtained clearly demonstrate the robustness of the proposed mechanism against occlusion and noise attacks.
Journal ArticleDOI

Asymmetric color image encryption and compression based on discrete cosine transform in Fresnel domain

TL;DR: The robustness of the proposed method is checked against various existing attacks and a comparative analysis confirms the effectiveness of the method.
Journal ArticleDOI

Asymmetric hybrid encryption scheme based on modified equal modulus decomposition in hybrid multi-resolution wavelet domain

TL;DR: Results show that single equal modulus decomposition with fractional Fourier transform and hybrid transform are vulnerable to theSpecial attack, whereas the proposed scheme endures the special attack.
Journal ArticleDOI

Analysis of triple random phase encoding cryptosystem in Fresnel domain

TL;DR: A triple random phase encryption scheme in the Fresneldomain is presented in a 4f system and provides enhanced security against known-plaintext and chosen-ciphertext attack as compared to double random phase encoding method in Fresnel domain.
References
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Journal ArticleDOI

Optical image encryption based on input plane and Fourier plane random encoding.

TL;DR: A new optical encoding method of images for security applications is proposed and it is shown that the encoding converts the input signal to stationary white noise and that the reconstruction method is robust.
Journal ArticleDOI

Optical encryption by double-random phase encoding in the fractional Fourier domain.

TL;DR: An optical architecture that encodes a primary image to stationary white noise by using two statistically independent random phase codes that has an enhanced security value compared with earlier methods is proposed.
Journal ArticleDOI

Double random-phase encoding in the Fresnel domain

TL;DR: A lensless optical security system based on double random-phase encoding in the Fresnel domain is proposed, which can encrypt a primary image to random noise by use of two statistically independent random- phase masks in the input and transform planes, respectively.
Journal ArticleDOI

Asymmetric cryptosystem based on phase-truncated Fourier transforms.

TL;DR: Owing to the nonlinear operation of phase truncation, high robustness against existing attacks could be achieved and a set of simulation results shows the validity of proposed asymmetric cryptosystem.
Journal ArticleDOI

Image compression–encryption scheme based on hyper-chaotic system and 2D compressive sensing

TL;DR: The proposed cryptosystem decreases the volume of data to be transmitted and simplifies the keys distribution simultaneously as a nonlinear encryption system with acceptable compression and security performance.
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