A Comprehensive Analysis of Chaos-Based Secure Systems

A Comprehensive Analysis of Chaos-Based Secure Systems
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DOI:
10.1007/978-3-030-96057-5_7
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发表时间:
2021
影响因子:
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通讯作者:
A. Hedayatipour;Ravi Monani;Amin Rezaei;Mehrdad Aliasgari;H. Sayadi
A. Hedayatipour;Ravi Monani;Amin Rezaei;Mehrdad Aliasgari;H. Sayadi
中科院分区:
计算机科学4区
文献类型:
--
作者:
A. Hedayatipour;Ravi Monani;Amin Rezaei;Mehrdad Aliasgari;H. Sayadi

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混沌是非线性动力系统在一定条件下,当状态变量的轨迹具有周期性且对初始条件高度敏感时所产生的一种确定性现象。混沌系统是灵活的,并且已经证明使用参数反馈控制通信是可能的。混沌同步是混沌在通信中应用的基础。混沌同步是指两个相同的混沌系统,每个系统都有自己独特的初始条件,其轨迹随时间收敛的特性。本文对不同的混沌方程进行了数据提取。Lorenz是本文实现的基本系统,其次是改进的Lorenz系统、Chua系统、L系统和Rssler系统。此外,最新的系统(例如,spprottd吸引器)也包含在数据提取过程中。健壮的系统实现为软件混乱和架构提供了另一种选择,并将进一步降低所需的功率和面积。这些混沌系统作为量子时代计算的替代方案,将导致同步和异步技术失败。所提取的数据根据其在集成电路中制造的难易程度组织了不同的混沌实现模式。为每个系统提取性能指标,包括功耗、面积、设计负载、噪声以及对工艺和温度变化的鲁棒性,以展示其优点。优点图展示了混沌方程拟合作为通信中具有混沌加密模式的发送/接收端实现。
Chaos is a deterministic phenomenon that emerges under certain conditions in a nonlinear dynamic system when the trajectories of the state variables become periodic and highly sensitive to the initial conditions. Chaotic systems are flexible, and it has been shown that communication is possible using parametric feedback control. Chaos synchronization is the basis of using chaos in communication. Chaos synchronization refers to the characteristic that the trajectories of two identical chaotic systems, each with its own unique initial conditions, converge over time.In this paper, data extraction is performed on different chaotic equations implemented as circuits. Lorenz is the base system implemented in this paper, followed by Modified Lorenz, Chua’s, L’s, and Rssler systems. Additionally, more recent systems (e.g., SprottD Attractor) are included in the data extraction process. The robust system implementations provide an alternative to software chaos and architectures, and will further reduce the required power and area. These chaotic systems serve as alternatives for quantum era computing, which will cause synchronous and asynchronous techniques to fail. The data extracted organize different modes of chaos implementation based on the ease of their fabrication in integrated circuits. Performance metrics including power consumption, area, design load, noise, and robustness to process and temperature variant are extracted for each system to demonstrate a figure of merit. The figure of merit showcases chaos equations fitting to be implemented as a transmitter/receiver with a mode of chaotic ciphering in communication.