FPGA IMPLEMENTATION OF HIGH SPEED RANDOM KEY GENERATION USING CHAOTIC PROCESS FOR CRYPTOGRAPHY APPLICATION.
Chaos was one of the most significant topics in nonlinear science and has been in-depth studying as the Lorenz system be found. Analysis of nonlinear dynamics and chaos in electronic systems has state of the art terribly within the past few years. A 0.Lorenz system is anhonor nonlinear dynamical dis...
| Publicado en: | Turkish Journal of Physiotherapy Rehabilitation Vol. 32; no. 2; pp. 953 - 961 |
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| Autores principales: | , , |
| Formato: | equations & formulas tables/charts tracings Journal Article |
| Publicado: |
Turkish Journal of Physiotherapy & Rehabilitation
2021
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| Acceso en línea: | Ver este registro en EBSCOhost |
| Sumario: | Chaos was one of the most significant topics in nonlinear science and has been in-depth studying as the Lorenz system be found. Analysis of nonlinear dynamics and chaos in electronic systems has state of the art terribly within the past few years. A 0.Lorenz system is anhonor nonlinear dynamical dissipative system and that initially extracts at Lorenz to work chaos during weather patterns. That paper distinct working the FPGA implementation from Lorenz chaotic oscillator. At first, the Lorenz chaotic oscillator model was build using MATLAB-Simulink model and later that wasa change in the Generator model of Xilinx System. The synchronization from the Lorenz oscillator was moreover no more rising that project. The Pecora-Carroll familiar flowing synchronization technique was affected for reaching synchronization. Now the exploits from the response method turn on deportment from a drive method. That event of chaos synchronization can serve as the basis to reach ensures communication. Before adding a message signal to the chaotic signal secure communication can be attained and that can be received at the receiver without any distortion or loss. In this design is carry out in a Virtex-II xc2v1000fg456-4 FPGA device and the resource utilization iscalculated. |
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