Considering the security of a communication system, designing a high-dimensional complex chaotic system suitable for chaotic synchronization has become a key problem in chaotic secure communication. In this paper, a new 5-D hyperchaotic system with high order nonlinear terms was constructed and proved to be hyperchaotic by dynamical characterization characteristics, the maximum Lyapunov exponent was close to 2, and there was a better permutation entropy index, while a valid chaotic sequence could be generated in three cycles in the FPGA (Field Programmable Gate Array)-based implementation. A multivariable nonlinear feedback synchronous controller based on FPGA was proposed to design and implement synchronization of high order complex hyperchaotic systems. The results show that the error signal converged to 0 rapidly under the effect of the nonlinear feedback synchronous controller. This lays the foundation for the synchronization of high order complex chaotic systems.
FPGA-Based Implementation and Synchronization Design of a New Five-Dimensional Hyperchaotic System.
基于FPGA的新型五维超混沌系统的实现与同步设计
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作者:Wang Ya, Li Xinyu, Li Xiaodong, Guang Yerui, Wu Yanan, Ding Qun
| 期刊: | Entropy | 影响因子: | 2.000 |
| 时间: | 2022 | 起止号: | 2022 Aug 24; 24(9):1179 |
| doi: | 10.3390/e24091179 | ||
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