2021Unpublished venueRequires access

Asymmetric Image Encryption Based on Twin Message Fusion

Mohammed Elhabib Kahla, Mounir Beggas, Abdelkader Laouid, Mostefa Kara, Muath AlShaikh

Open publisher page 12 citations

Abstract

After the digital revolution, it has become imperative for us to protect personal information, one of the most important of this information is the image, the most widely used protection methods are encryption, and despite the research that included this topic, there are still a few problems, including encryption and decryption speed, image encryption size, and how keys can be shared by Safeway. This paper proposes a novel image asymmetric encryption scheme based on Magic Number Fragmentation and El-Gamal Encryption (MNF-G); to begin with, the plain- image is converted into blocks of bits; then, to decimal; finally, the plain-image well be encrypted these blocks by MNF-G algorithm. The experimental result shows that the proposed algorithm can successfully encrypt/decrypt images and it has a good encryption effect. Image encrypted developed by this scheme will be entirely different when compared to the original image file and will be suitable for the secured transmission over the internet. Thus, this model provides an additional level of security.

About this research paper

What this paper is about

After the digital revolution, it has become imperative for us to protect personal information, one of the most important of this information is the image, the most widely used protection methods are encryption, and despite the research that included this topic, there are still a few problems, including encryption and decryption speed, image encryption size, and how keys can be shared by Safeway. This paper proposes a novel image asymmetric encryption scheme based on Magic Number Fragmentation and El-Gamal Encryption (MNF-G); to begin with, the plain- image is converted into blocks of bits; then, to decimal; finally, the plain-image well be encrypted these blocks by MNF-G algorithm. The experimental result shows that the proposed algorithm can successfully encrypt/decrypt images and it has a good encryption effect. Image encrypted developed by this scheme will be entirely different when compared to the original image file and will be suitable for the secured transmission over the internet. Thus, this model provides an additional level of security.

Why it matters

OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

After the digital revolution, it has become imperative for us to protect personal information, one of the most important of this information is the image, the most widely used protection methods are encryption, and despite the research that included this topic, there are still a few problems, including encryption and decryption speed, image encryption size, and how keys can be shared by Safeway. This paper proposes a novel image asymmetric encryption scheme based on Magic Number Fragmentation and El-Gamal Encryption (MNF-G); to begin with, the plain- image is converted into blocks of bits; then, to decimal; finally, the plain-image well be encrypted these blocks by MNF-G algorithm. The experimental result shows that the proposed algorithm can successfully encrypt/decrypt images and it has a good encryption effect. Image encrypted developed by this scheme will be entirely different when compared to the original image file and will be suitable for the secured transmission over the internet. Thus, this model provides an additional level of security.

Key concepts: Encryption, Filesystem-level encryption, On-the-fly encryption, 56-bit encryption, 40-bit encryption, Computer science, Multiple encryption, Probabilistic encryption

Related papers

Back to paper searchBrowse research topicsOriginal source
Asymmetric Image Encryption Based on Twin Message Fusion — Research Paper | ScholarLens