基于混沌理论的数字图像分布密码学

M.H.P. Ranmuthugala, C. Gamage
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引用次数: 7

摘要

近年来,由于数字设备的广泛使用,人们建立社区网页的社会互动方式的改变,互联网在各种个人和商业活动中的广泛使用,数字多媒体的试用后付费服务以及高可靠性数字图像高速传输的发展,以数字形式提供的视觉信息量呈指数级增长。然而,互联网及其连接的主机的广泛可访问性以及捕获网络流量或渗透主机的技术的可用性使得数字图像在存储和通过网络传输期间容易受到未经授权的访问。因此,使用或处理数字图像的互联网用户和应用程序需要解决安全问题,以保护图像的商业价值,并确保用户隐私等问题。本文研究的目的是提出一种图像加密技术,该技术能够在预定义的可见性级别下有效安全地加密图像。所规定的目标是通过使用二维混沌地图称为卡普兰-约克地图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chaos theory based cryptography in digital image distribution
The amount of visual information available in digital format has grown exponentially in recent years due to the wide availability of digital equipments, changes in the way people socially interact by setting up community web pages, wide spread use of the Internet in all types of personal and business activities, pay-after-trial services of digital multimedia and developments in high speed transmission of digital images with high reliability. However, the wide accessibility of the Internet and its connected hosts and availability of technology to capture network traffic or penetrate hosts have made digital images vulnerable to unauthorized access while in storage and during transmission over a network. Hence users of the Internet and application that use or process digital images need to address security issues to protect commercial value of images and also ensure user privacy and other issues. The objective of the research presented in this paper focused on proposing an image encryption technique which is capable of encrypting an image effectively and securely with a predefined visibility level. The stipulated objective is achieved by employing 2D chaotic map called the Kaplan-Yorke map.
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