基于延迟和切换时间的混乱生成器对信息传输系统隐私的评估

V. I. Ponomarenko, Elena Navrotskaya, Danil Kul’minskii, Mikhail D. Prokhorov
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引用次数: 0

摘要

基于动态混沌的通信系统有许多积极的特点。动态混沌具有随机过程的特性,使得基于动态混沌的系统能够保证信息传输的保密性。然而,这种系统的定量安全评估是一个复杂的问题,因为评估密码强度的方法只针对经典的加密算法。目的:建立一种基于可切换时延混沌振荡器的通信系统中二进制信号隐藏传输保密性的定量估计方法。结果:提出了一种估计通信系统中二进制信息信号传输保密性的方法,该通信系统使用具有可切换延迟时间的混沌时滞振荡器作为发射机。该方法基于所研究的混沌通信系统的密钥空间功率估计。我们考虑了某些发射机参数已知的情况,以及所有发射机参数未知的最一般情况。基于动态混沌的通信系统可能比使用密钥长度为56位的经典密码算法具有更高的机密性,但在加密强度方面明显不如使用密钥长度为128位的密码算法。实际意义:提出的方法使我们能够获得基于动态混沌的通信系统机密性的定量估计,并将其与已知强度的经典密码算法进行比较。
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ОЦЕНКА КОНФИДЕНЦИАЛЬНОСТИ СИСТЕМЫ ПЕРЕДАЧИ ИНФОРМАЦИИ НА ОСНОВЕ ХАОТИЧЕСКОГО ГЕНЕРАТОРА С ЗАПАЗДЫВАНИЕМ И ПЕРЕКЛЮЧАЕМЫМ ВРЕМЕНЕМ ЗАДЕРЖКИ
Introduction: Communication systems based on the use of dynamical chaos have a number of positive features. Dynamical chaoshas the properties of random processes, which allows systems based on it to ensure the information transmission confidentiality.However, a quantitative security assessment of such systems is a complicated problem, since the methods for evaluating cryptographicstrength are well developed only for the classical encryption algorithms. Purpose: Development of a method for quantitative estimationof confidentiality of a binary signal hidden transmission in a communication system based on a chaotic time-delay oscillator withswitchable delay time. Results: A method is proposed for estimating the confidentiality of a binary information signal transmissionin a communication system using a chaotic time-delay oscillator with switchable delay time as a transmitter. The method is based onestimating the power of the key space for the chaotic communication system under study. We have considered the cases when sometransmitter parameters are known, and the most general case when all the transmitter parameters are unknown. A communicationsystem based on dynamical chaos may have a much higher confidentiality than the classical cryptographic algorithm using a cipher witha key length of 56 bits, but is significantly inferior in terms of cryptographic strength to a cipher with a key length of 128 bits. Practicalrelevance: The proposed method allows us to obtain a quantitative estimation of confidentiality of communication systems based ondynamical chaos, and compare it with the known strength of classical cryptographic algorithms.
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来源期刊
Informatsionno-Upravliaiushchie Sistemy
Informatsionno-Upravliaiushchie Sistemy Mathematics-Control and Optimization
CiteScore
1.40
自引率
0.00%
发文量
35
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