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A Novel Simple 4-D Hyperchaotic System with a Saddle-Point lndex-2 Equilibrium Point and Multistability: Design and FPGA-Based Applications

机译:具有鞍点LNDEX-2平衡点和多重性的新型简单的4-D超混沌系统:设计和基于FPGA的应用

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This paper presents a novel simple 4-D dissipative autonomous hyperchaotic system with a saddle-point index-2 equilibrium point. The dynamics of the new system consists of nine terms with two nonlinear terms. Thus, the proposed system is one of the simplest 4-D hyperchaotic systems. The new system also shows multistability behavior for some range of its parameters. Bifurcation diagrams, Lyapunov spectrum, Kaplan-Yorke dimension, and phase plots are used to analyze the complex dynamical behavior of the system. The discrete-time equivalent of the presented hyperchaotic system is made by using the Euler algorithm for improving the embedded chaos-based engineering applications on FPGA. Then, the design of a novel TRNG having chaotic entropy seed has been performed utilizing FPGA-based 4-D hyperchaotic system structure. The Euler-based model in the creation phase on FPGA has been described using VHDL with 32-bit IEEE 754-1985 floating-point format. The designed hyperchaotic system and TRNG unit have been synthesized using Xilinx ISE Design Tools, and chip statistics obtained from place-and-route process have been presented by testing in the Virtex-6 FPGA chip of Xilinx family. The numbers generated in high data rates of 185.447 Mbit/s have been obtained with 370.894 MHz clock frequency for the implementation of the novel TRNG unit. In the last stage, randomness tests of the generated random numbers have been carried out and the generated random numbers have passed successfully all randomness tests.
机译:本文介绍了一种新型简单的4-D耗散自主超声系统,具有鞍点指数-2平衡点。新系统的动态包括九个术语,具有两个非线性术语。因此,所提出的系统是最简单的4-D超混沌系统之一。新系统还显示了多个参数范围的多个能力行为。分叉图,Lyapunov光谱,Kaplan-Yorke尺寸和相位图用于分析系统的复杂动态行为。通过使用欧拉算法来改善FPGA上的嵌入式混沌的工程应用来进行所提出的超混沌系统的离散时间等效。然后,已经利用基于FPGA的4-D超混沌系统结构进行了具有混沌熵种子的新型TRNG的设计。使用VHDL与32位IEEE 754-1985浮点格式的VHDL描述了FPGA上的创建阶段的基于欧拉的模型。设计了通过Xilinx ISE设计工具合成了设计的超色系统和TRNG单元,并通过在Xilinx系列的Virtex-6 FPGA芯片中测试了从地位和路线过程中获得的芯片统计数据。已经获得了高数据速率为185.447 Mbit / s的数字,以370.894 MHz时钟频率为实现新颖的TRNG单元。在最后阶段,已经执行生成的随机数的随机性测试,并且生成的随机数已成功传递所有随机性测试。

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