基于混沌的安全视频传输加/解密系统

Xin Huang, David Arnold, Tianyang Fang, J. Saniie
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引用次数: 5

摘要

超声波通信是通过固体传输信息的另一种通信方法。发送视频流可以传递比单个传感器更多的信息,视频监控在超声波通信应用中显示出巨大的潜力。需要一种高效、安全的密码系统来保护敏感的视频流。在本文中,我们提出了一种新的基于混沌的加密方案,利用1-D和2-D迭代模型用于安全视频流。该算法基于Arnold Cat Map和Logistic Map,具有良好的混淆和扩散特性。Arnold Cat Map通过几次迭代将数据集转换为伪随机状态,并且是可逆的,而Logistic Map引入了一个特定的外部密钥来替换和恢复加密和解密期间的像素值。加密和解密过程都在我们的密码系统场景中给出并公式化。该方法保持了良好的加密质量,具有较高的密钥灵敏度和较低的像素相关性。比较和讨论了使用独立混沌映射和新加密方案的安全视频帧的结果。实验和分析表明,基于混沌的算法最适合于超声波视频通信系统,并且具有抗安全攻击的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Chaotic-based Encryption/Decryption System for Secure Video Transmission
Ultrasonic communication is an alternative communication method of transmitting information through solids. Sending video streams can deliver more information than a single sensor, and video monitoring shows great potential in ultrasonic communication applications. An efficient and secure cryptosystem is needed to protect the sensitive video stream. In this paper, we propose a novel Chaotic-based encryption scheme utilizing 1-D and 2-D iteration models for secure video streaming. This algorithm is based on the Arnold Cat Map and the Logistic Map and has good confusion and diffusion properties. The Arnold Cat Map transforms the dataset into a pseudo-random state over several iterations and is reversible, while the Logistic Map introduces a specific external key to replace and recover the pixels value during encryption and decryption. Both the encryption and decryption processes are presented and formulated in our cryptosystem scenario. The proposed method maintains a good encryption quality, provides key sensitivity and has low correlation between pixels. The results of a secured video frame using separate Chaotic Maps and the novel encryption scheme are compared and discussed. Experiments and analysis demonstrate that the Chaotic-based algorithm is best suited for the ultrasonic video communication system and is resilient to security attacks.
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