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Journal ArticleDOI

High speed FPGA-based chaotic oscillator design

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TLDR
Hardware-based design of Lu-Chen chaotic system can be used in various chaos-based embedded system applications including cryptography, secure communication and random number generation and provides better results than the alternatives with respect to FPGA resource utilization.
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This article is published in Microprocessors and Microsystems.The article was published on 2019-04-01. It has received 42 citations till now. The article focuses on the topics: Chaotic & VHDL.

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Citations
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Journal ArticleDOI

Analysis and FPGA Realization of a Novel 5D Hyperchaotic Four-Wing Memristive System, Active Control Synchronization, and Secure Communication Application

TL;DR: This research demonstrates that the hardware-based design of the 5D HFWMS can be applied to various chaos-based embedded system applications including random number generation, cryptography, and secure communication.
Journal ArticleDOI

Design, FPGA implementation and statistical analysis of chaos-ring based dual entropy core true random number generator

TL;DR: A novel chaos-ring based dual entropy core TRNG architecture on FPGA with high operating frequency and high throughput has been performed and presented.
Journal ArticleDOI

Hyperjerk multiscroll oscillators with megastability: Analysis, FPGA implementation and a novel ANN-ring-based True Random Number Generator

TL;DR: A new dual entropy core hybrid TRNG having high speed by using the structures of ANN-based chaotic system and ring oscillator, coded in VHDL with respect to IEEE-754-1985 number standard is presented.
Journal ArticleDOI

Design and FPGA Implementation of a Pseudorandom Number Generator Based on a Four-Wing Memristive Hyperchaotic System and Bernoulli Map

TL;DR: In this article, a pseudorandom number generator (PRNG) based on a no-equilibrium four-wing memristive hyperchaotic system (FWMHS) and its implementation on Field Programmable Gate Array (FPGA) board is presented.
Journal ArticleDOI

Multistability Analysis, Coexisting Multiple Attractors, and FPGA Implementation of Yu–Wang Four-Wing Chaotic System

TL;DR: The RK4 algorithm of the Verilog 32-bit floating-point standard format is used to realize the autonomous multistable 4D Yu–Wang chaotic system on FPGA, so that it can be applied in embedded engineering based on chaos.
References
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Journal ArticleDOI

Deterministic nonperiodic flow

TL;DR: In this paper, it was shown that nonperiodic solutions are ordinarily unstable with respect to small modifications, so that slightly differing initial states can evolve into considerably different states, and systems with bounded solutions are shown to possess bounded numerical solutions.
Journal ArticleDOI

An equation for continuous chaos

TL;DR: A prototype equation to the Lorenz model of turbulence contains just one (second-order) nonlinearity in one variable as mentioned in this paper, which allows for a "folded" Poincare map (horseshoe map).
Book ChapterDOI

Period Three Implies Chaos

TL;DR: In this article, a generalized logistic equation was used to model the distribution of points of impact on a spinning bit for oil well drilling, as mentioned if this distribution is helpful in predicting uneven wear of the bit.
Book

The general problem of the stability of motion

TL;DR: In this article, the general problem of the stability of motion is considered and the authors propose a solution to the problem of stability in the stability-of-motion (SOM) problem.
Journal ArticleDOI

A new chaotic attractor coined

TL;DR: This letter reports the finding of a new chaotic attractor in a simple three-dimensional autonomous system, which connects the Lorenz attractor and Chen's attractsor and represents the transition from one to the other.
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