Image encryption based on combined between linear feedback shift registers and 3D chaotic maps
TL;DR: In this paper , the authors presented a novel method for image data encryption that combines chaotic maps with linear feedback shift registers in two stages, where in the first stage, the image is divided into two parts, and the locations of the pixels of each part are redistributed through the random numbers key, which is generated using linear feedback shifts registers.
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Abstract: Protecting information sent through insecure internet channels is a significant challenge facing researchers. In this paper, we present a novel method for image data encryption that combines chaotic maps with linear feedback shift registers in two stages. In the first stage, the image is divided into two parts. Then, the locations of the pixels of each part are redistributed through the random numbers key, which is generated using linear feedback shift registers. The second stage includes segmenting the image into the three primary colors red, green, and blue (RGB); then, the data for each color is encrypted through one of three keys that are generated using three-dimensional chaotic maps. Many statistical tests (entropy, peak signal-noise ratio (PSNR), mean square error (MSE) and correlation) were conducted on a group of images to determine the strength and efficiency of the proposed method, and the result proves that the proposed method provided a good level of safety. The obtained results were compared with those of other methods, and the result of comparing confirms the superiority of the proposed method.
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Citations
Improving QR Code Security using Multiple Encryption Layers
S. D. Narayanan,Dr. S. Prabhu,E. Padma +2 more
- 17 Apr 2024
TL;DR: Multiple encryption layers are used to improve QR code security, protecting data from counterfeiting and theft.
1
Strengthening QR code Anti-Counterfeit through Multi-Encryption Algorithm
S. D. Narayanan,Dr. S. Prabhu +1 more
- 17 Apr 2024
TL;DR: A novel multi-encryption algorithm for QR code anti-counterfeit enhances security by integrating AES and Rubik's Cube Principle, effectively safeguarding data from theft and tampering.
References
A New Beta Chaotic Map with DNA Encoding for Color Image Encryption
Ibtisam A. Taqi,Sarab M. Hameed +1 more
TL;DR: A new Beta chaotic map for encrypting and confusing the color image with Deoxyribonucleic Acid (DNA) sequence and the experimental results prove that the proposed method surpassed the other methods in terms of Mean Square Error (MSE), Peak Signal-To-Noise Ratio (PSNR), entropy, and correlation coefficient.
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Color Image Encryption Using LFSR, DNA, and 3D Chaotic Maps
TL;DR: In this article , a new method for encrypting image data divided into two stages is presented, where the first stage requires redistributing the positions of the pixels by using a key of random numbers generated by linear feedback shift registers and then encrypting the data using deoxyribonucleic acid rules.
A Novel Technique for Secure Data Cryptosystem Based on Chaotic Key Image Generation
TL;DR: The results proved that the proposed encryption technique is very promising when tested on more than 500 image samples according to security measurements where the histograms of cipher images are very flatten compared with that for original images, while the averages of Mean Square Error is very high and Peak Signal to Noise Ratio is very low.
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3D chaos graph deep learning method to encrypt and decrypt digital image
TL;DR: This paper presents a method for image encoding and decoding electronically using deep learning, the proposed algorithm was developed by using the hybrid technique of 3D chaos map generation, the best case of the proposed technique gave the following results.