基于apsamry常数的新型超混沌系统发生器的设计与实现

IF 2.2 3区 工程技术 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Omer Kocak , Uğur Erkan , Ismail Babaoglu
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引用次数: 0

摘要

现代混沌系统需要高水平的随机性和复杂性,这可以通过自适应种子函数来实现。为了满足这一需求,本文提出了一种基于apsamry数的二维apsamry混沌系统发生器(2D- acg)。2D-ACG利用经典种子函数生成各种混沌系统。利用Cos-Cos、Sin-Sin和Cos-Sin对种子函数,在三个著名的混沌映射实例上验证了2D-ACG算法的有效性和性能。Lyapunov指数(LE)、样本熵(SE)、相关维数(CD)、Kolmogorov熵(KE)、C0检验和灵敏度等混沌度量的可靠性证实了这些映射的混沌性能。与已报道的二维混沌系统的比较进一步支持了这一点。此外,2D-ACG导出的其中一个映射已被实现到图像加密算法中,并成功通过了密码分析测试。此外,2D-ACG的硬件实现已经在现场可编程门阵列(FPGA)上进行了测试,从而证实了其有效性。结果表明,基于apsamry常数的2D-ACG具有更强的多样性和更复杂的结构,具有更好的混沌特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and practical implementation of a novel hyperchaotic system generator based on Apéry's constant
Modern chaotic systems necessitate high levels of randomness and complexity, which can be achieved through adaptable seed functions. This paper proposes a new 2D Apéry chaotic system generator (2D-ACG) based on Apéry numbers to fulfill this need. The 2D-ACG generates various chaotic systems using classical seed functions. The effectiveness and the capabilities of 2D-ACG are demonstrated on three well-known example chaotic maps using pairs of seed functions such as Cos-Cos, Sin-Sin and Cos-Sin. The reliability of chaos metrics, such as the Lyapunov exponent (LE), sample entropy (SE), correlation dimension (CD), Kolmogorov entropy (KE), C0 test, and sensitivity, confirms the chaotic performance of these maps. This is further supported by a comparison with reported 2D chaotic systems. Furthermore, one of the maps derived from 2D-ACG has been implemented into an image encryption algorithm and has successfully passed the cryptanalysis tests. Additionally, the hardware implementation of 2D-ACG has been tested on a field programmable gate array (FPGA), thereby confirming its efficacy. The superior results obtained indicate that the proposed 2D-ACG, with its enhanced diversity and complex structure derived from the Apéry's constant, exhibits higher-performance chaotic characteristics.
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来源期刊
Integration-The Vlsi Journal
Integration-The Vlsi Journal 工程技术-工程:电子与电气
CiteScore
3.80
自引率
5.30%
发文量
107
审稿时长
6 months
期刊介绍: Integration''s aim is to cover every aspect of the VLSI area, with an emphasis on cross-fertilization between various fields of science, and the design, verification, test and applications of integrated circuits and systems, as well as closely related topics in process and device technologies. Individual issues will feature peer-reviewed tutorials and articles as well as reviews of recent publications. The intended coverage of the journal can be assessed by examining the following (non-exclusive) list of topics: Specification methods and languages; Analog/Digital Integrated Circuits and Systems; VLSI architectures; Algorithms, methods and tools for modeling, simulation, synthesis and verification of integrated circuits and systems of any complexity; Embedded systems; High-level synthesis for VLSI systems; Logic synthesis and finite automata; Testing, design-for-test and test generation algorithms; Physical design; Formal verification; Algorithms implemented in VLSI systems; Systems engineering; Heterogeneous systems.
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