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Chaos-based Cryptography for Transmitting Multimedia Data over Public Channels

机译:基于混沌的密码技术,用于在公共频道上传输多媒体数据

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This paper explores using chaos-based cryptography for transmitting multimedia data, mainly speech and voice messages, over public communication channels, such as the internet. The secret message to be transmitted is first converted into a one-dimensional time series, that can be cast in a digital/binary format. The main feature of the proposed technique is mapping the two levels of every corresponding bit of the time series into different multiple chaotic orbits, using a simple encryption function. This one-to-many mapping robustifies the encryption technique and makes it resilient to crypto-analysis methods that rely on associating the energy level of the signal into two binary levels, using return map attacks. A chaotic nonautonomous Duffing oscillator is chosen to implement the suggested technique, using three different parameters that are assumed unknown at the receiver side. Synchronization between the transmitter and the receiver and reconstructing the secret message, at the receiver side, is done using a Lyapunov-based adaptive technique. Achieving stable operation, tuning the required control gains, as well as effective utilization of the bandwidth of the public communication channel are investigated. Two different case studies are presented; the first one deals with text that can be expressed as 8-bit ASCII code, while the second one corresponds to an analog acoustic signal that corresponds to the voice associated with pronouncing a short sentence. Advantages and limitation of the proposed technique are highlighted, while suggesting extensions to other multimedia signals, along with their required additional computational effort.
机译:本文探索了使用基于混沌的加密技术来通过公共通信渠道(例如Internet)传输多媒体数据,主要是语音和语音消息。首先将要发送的秘密消息转换为一维时间序列,可以将其转换为数字/二进制格式。所提出的技术的主要特征是使用简单的加密函数将时间序列的每个对应位的两个级别映射到不同的多个混沌轨道。这种一对多映射增强了加密技术的稳定性,使其对依赖于使用返回映射攻击将信号的能量级别关联为两个二进制级别的加密分析方法具有弹性。选择一个混沌的非自治Duffing振荡器来实现所建议的技术,它使用三个不同的参数,这些参数在接收器端被认为是未知的。使用基于Lyapunov的自适应技术,可以完成发送方与接收方之间的同步以及在接收方重建机密消息。为实现稳定的操作,调整所需的控制增益以及有效利用公共通信信道的带宽,我们进行了研究。提出了两个不同的案例研究;第一个处理可表示为8位ASCII码的文本,第二个处理对应于模拟声信号,该模拟声信号对应于与发音短句相关的语音。强调了所提出技术的优点和局限性,同时提出了对其他多媒体信号的扩展及其所需的额外计算工作的建议。

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