Design of pseudorandom number generator based on a controllable multi-double-scroll chaotic system
暂无分享,去创建一个
[1] M. A. Murillo-Escobar,et al. Pseudorandom number generator based on novel 2D Hénon-Sine hyperchaotic map with microcontroller implementation , 2022, Nonlinear Dynamics.
[2] Shukai Duan,et al. A novel conservative system with hidden flows evolved from the simplest memristive circuit. , 2022, Chaos.
[3] G. D. Leutcho,et al. Multistable dynamics and control of a new 4D memristive chaotic Sprott B system , 2022, Chaos, Solitons & Fractals.
[4] Guanrong Chen,et al. Design and Analysis of Multiscroll Memristive Hopfield Neural Network With Adjustable Memductance and Application to Image Encryption , 2022, IEEE Transactions on Neural Networks and Learning Systems.
[5] Ning Wang,et al. Multistability Route in a PWL Multi-scroll System through Fractional-Order Derivatives , 2022, Chaos, Solitons & Fractals.
[6] Manashita Borah,et al. Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson's and Ebola Virus diseases. , 2021, Chaos, solitons, and fractals.
[7] Mangal Deep Gupta,et al. Hardware Efficient Pseudo-Random Number Generator Using Chen Chaotic System on FPGA , 2021, J. Circuits Syst. Comput..
[8] Zhigang Zeng,et al. Generating Any Number of Initial Offset-Boosted Coexisting Chua’s Double-Scroll Attractors via Piecewise-Nonlinear Memristor , 2021, IEEE Transactions on Industrial Electronics.
[9] M. S. Azzaz,et al. Design and FPGA implementation of TRNG based on a new multi-wing attractor in Lorenz chaotic system , 2021, The European Physical Journal Special Topics.
[10] Shuo Cai,et al. Pseudorandom number generator based on a 5D hyperchaotic four-wing memristive system and its FPGA implementation , 2021, The European Physical Journal Special Topics.
[11] G. Gagnon,et al. Designing a Pseudorandom Bit Generator With a Novel Five-Dimensional-Hyperchaotic System , 2021, IEEE Transactions on Industrial Electronics.
[12] Faqiang Wang,et al. A New 4D Piecewise Linear Multiscroll Chaotic System with Multistability and Its FPGA-Based Implementation , 2021, Complex..
[13] Zenghui Wang,et al. Pseudo-random number generator based on a generalized conservative Sprott-A system , 2021, Nonlinear Dynamics.
[14] En-Zeng 恩增 Dong 董,et al. A multi-directional controllable multi-scroll conservative chaos generator: Modelling, analysis, and FPGA implementation , 2021, Chinese Physics B.
[15] Lei Zhu,et al. Initials-Boosted Coexisting Chaos in a 2-D Sine Map and Its Hardware Implementation , 2021, IEEE Transactions on Industrial Informatics.
[16] Shiqiang Chen,et al. Multi-Scroll Chaotic System Model and Its Cryptographic Application , 2020, Int. J. Bifurc. Chaos.
[17] Karthikeyan Rajagopal,et al. A Novel Simple 4-D Hyperchaotic System with a Saddle-Point Index-2 Equilibrium Point and Multistability: Design and FPGA-Based Applications , 2020, Circuits, Systems, and Signal Processing.
[18] Guoshan Zhang,et al. Coexisting asymmetric behavior and free control in a simple 3-D chaotic system , 2020 .
[19] Xiaoyang Liu,et al. A novel amplitude control method for constructing nested hidden multi-butterfly and multiscroll chaotic attractors , 2020 .
[20] Noor Munir,et al. An Encryption Scheme Based on Discrete Quantum Map and Continuous Chaotic System , 2020 .
[21] Murat Tuna,et al. Design, FPGA implementation and statistical analysis of chaos-ring based dual entropy core true random number generator , 2020 .
[22] Yi Zhao,et al. A self-perturbed pseudo-random sequence generator based on hyperchaos , 2019 .
[23] Chunhua Wang,et al. Multi-scroll hidden attractors with two stable equilibrium points. , 2019, Chaos.
[24] Miguel Angel Murillo-Escobar,et al. Pseudorandom number generator based on enhanced Hénon map and its implementation , 2019, AEU - International Journal of Electronics and Communications.
[25] Ahmed M. Soliman,et al. Reconfigurable chaotic pseudo random number generator based on FPGA , 2019, AEU - International Journal of Electronics and Communications.
[26] Bocheng Bao,et al. Generating Multi-Scroll Chua’s Attractors via Simplified Piecewise-Linear Chua’s Diode , 2018, IEEE Transactions on Circuits and Systems I: Regular Papers.
[27] Jacques Kengne,et al. Dynamic analysis and multistability of a novel four-wing chaotic system with smooth piecewise quadratic nonlinearity , 2018, Chaos, Solitons & Fractals.
[28] Ahmed S. Elwakil,et al. Hardware Optimized FPGA Implementations of High-Speed True Random Bit Generators Based on Switching-Type Chaotic Oscillators , 2018, Circuits Syst. Signal Process..
[29] Lei Zhang,et al. System generator model-based FPGA design optimization and hardware co-simulation for Lorenz chaotic generator , 2017, 2017 2nd Asia-Pacific Conference on Intelligent Robot Systems (ACIRS).
[30] Matthew Nicol,et al. Generation of multi-scroll attractors without equilibria via piecewise linear systems. , 2017, Chaos.
[31] José-Cruz Nuñez Pérez,et al. FPGA realization of multi-scroll chaotic oscillators , 2015, Commun. Nonlinear Sci. Numer. Simul..
[32] Farzad Towhidkhah,et al. One-dimensional map-based neuron model: A logistic modification , 2014 .
[33] Michael V. Basin,et al. A family of hyperchaotic multi-scroll attractors in Rn , 2014, Appl. Math. Comput..
[34] Julien Clinton Sprott,et al. Amplitude control approach for chaotic signals , 2013 .
[35] Xinzhi Liu,et al. Multi-scroll Chaotic and hyperchaotic attractors Generated from Chen System , 2012, Int. J. Bifurc. Chaos.
[36] Mohammed Affan Zidan,et al. The effect of numerical techniques on differential equation based chaotic generators , 2011, ICM 2011 Proceeding.
[37] Xin-Chu Fu,et al. Projective Synchronization of Driving–Response Systems and Its Application to Secure Communication , 2009, IEEE Transactions on Circuits and Systems I: Regular Papers.
[38] Pierre L'Ecuyer,et al. TestU01: A C library for empirical testing of random number generators , 2006, TOMS.
[39] Yang Tao,et al. Impulsive stabilization for control and synchronization of chaotic systems: theory and application to secure communication , 1997 .
[40] M. Bernardo. An adaptive approach to the control and synchronization of continuous-time chaotic systems , 1996 .
[41] J. Sprott,et al. Some simple chaotic flows. , 1994, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[42] C. P. Silva,et al. Shil'nikov's theorem-a tutorial , 1993 .
[43] Leon O. Chua,et al. Chaos Synchronization in Chua's Circuit , 1993, J. Circuits Syst. Comput..
[44] A. Rucklidge. Chaos in models of double convection , 1992, Journal of Fluid Mechanics.
[45] A. Wolf,et al. Determining Lyapunov exponents from a time series , 1985 .
[46] Takashi Matsumoto,et al. A chaotic attractor from Chua's circuit , 1984 .
[47] E. Lorenz. Deterministic nonperiodic flow , 1963 .
[48] Qing-Yu 擎宇 Shi 石,et al. Design and FPGA implementation of a memristor-based multi-scroll hyperchaotic system , 2022 .
[49] T. Liao,et al. Design and Synchronization of Chaos-Based True Random Number Generators and Its FPGA Implementation , 2022, IEEE Access.
[50] Yinhe Wang,et al. Shape Synchronization in Driver-Response of 4-D Chaotic System and Its Application in Image Encryption , 2020, IEEE Access.
[51] Ehab Abou-Bakr,et al. Random property enhancement of a 1D chaotic PRNG with finite precision implementation , 2019, Chaos, Solitons & Fractals.
[52] Chunbiao Li,et al. A Memristive Chaotic Oscillator With Increasing Amplitude and Frequency , 2018, IEEE Access.
[53] Julien Clinton Sprott,et al. A comparison of correlation and Lyapunov dimensions , 2005 .
[54] D L Hudson,et al. Non-linear analysis using continuous chaotic modeling. , 2004, Cellular and molecular biology.
[55] J. Suykens,et al. Generation of n-double scrolls (n=1, 2, 3, 4,...) , 1993 .