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A new auto-switched chaotic system and its FPGA implementation

机译:一种新型的自动切换混沌系统及其FPGA实现

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This paper presents a 3D chaotic system which is constructed by an auto-switched numerical resolution of multiple three dimensional continuous chaotic systems. The designed chaotic system provides complex chaotic attractors and can change its behaviors automatically via a chaotic switching-rule. Some complex dynamical behaviors are investigated and analyzed. The originality of the proposed architecture is that allows to solve the problem of the finite precision due to the digital implementation while provides a good tradeoff between high security, performance and hardware resources (low power and cost). Hardware digital implementation and FPGA circuit experimental results demonstrate a promising technique can be applied in efficient embedded ciphering communication systems. Moreover, the proposed chaotic system should be very useful for the consideration of reducing negative influence of dynamical degradation in real-time embedded applications.
机译:本文提出了一种3D混沌系统,它是由多个三维连续混沌系统的自动切换数值分辨率构成的。设计的混沌系统提供了复杂的混沌吸引子,并可以通过混沌切换规则自动更改其行为。对一些复杂的动力学行为进行了研究和分析。所提出的体系结构的独创性是允许解决由于数字实现而导致的有限精度的问题,同时在高安全性,性能和硬件资源(低功耗和成本)之间提供了良好的折衷。硬件数字实现和FPGA电路实验结果表明,一种有前途的技术可以应用于高效的嵌入式加密通信系统中。此外,对于减少实时嵌入式应用程序中动态降级的负面影响的考虑,提出的混沌系统应该非常有用。

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