An efficient image privacy scheme based on nonlinear chaotic system and linear canonical transformation

  • Usman Arshad
  • , Majid Khan
  • , Sajjad Shaukat
  • , Muhammad Amin
  • , Tariq Shah

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

Making information invulnerable is one of the most critical issues of today's era where information is being sent from one source to another destination with expeditious rates. In this research article, linear canonical transform (LCT) along with Lorenz differential equation is subjected for the process of double image encryption for its inherent characteristics which implies the diffusion and confusion of current era. In the contemplated method standard color images; Lena and Pepper of size 256×256 are used. Image scrambling, LCT of first order and second order along with Lorenz system are adapted as the steps on encryption process. The reverse process of defined encryption scheme is endorsed for the reformation of the original plain images separately from the single encrypted image. For quality assessment of the encryption scheme; different security and statistical analysis are performed and histograms of all the images are analyzed. As a result, statistical assessments recommended that our contemplated scheme is legitimate for the security of digital images.

Original languageEnglish
Article number123458
JournalPhysica A: Statistical Mechanics and its Applications
Volume546
DOIs
StatePublished - 15 May 2020
Externally publishedYes

Keywords

  • Chaotic systems
  • Confusion and diffusion
  • Linear canonical transform
  • Lorenz system
  • Statistical analysis

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