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Logarithms-based RGB image encryption in the fractional Fourier domain: A non-linear approach
Authors:Madhusudan Joshi  Chandra Shakher  Kehar Singh
Institution:1. The International Centre for Automotive Technology, Plot No. 26, Sector 3, IMT Manesar, Gurgaon 122050, Haryana, India;2. Instrument Design and Development Centre, Indian Institute of Technology Delhi, New Delhi 110016, India;3. Department of Physics, Indian Institute of Technology Delhi, New Delhi 110016, India
Abstract:We propose a non-linear image encryption scheme for RGB images, using natural logarithms and fractional Fourier transform (FRT). The RGB image is first segregated into the component color channels and each of these components is hidden inside a random mask (RM) using base changing rule of logarithms. Subsequently, these channels are encrypted independently using random phase masks (RPMs) and the FRT. The fractional orders of the FRT, input random masks and random phase masks used in each channel serve as the keys for encryption and decryption. The algorithms to implement the proposed scheme are discussed, and results of digital simulation are presented. The robustness of the technique is analyzed against the variation in fractional orders of the FRT, change of RMs and RPMs, and occlusion of the encrypted data, respectively. Performance of the scheme has also been studied against the attacks using noise and partial windows of the correct RPMs. The proposed technique is shown to perform better against some attacks in comparison to the conventional linear methods.
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