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PVT-Robust CMOS Programmable Chaotic Oscillator: Synchronization of Two 7-Scroll Attractors

机译:PVT稳健的CMOS可编程混沌振荡器:两个7涡旋吸引子的同步

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摘要

Designing chaotic oscillators using complementary metal-oxide-semiconductor (CMOS) integrated circuit technology for generating multi-scroll attractors has been a challenge. That way, we introduce a current-mode piecewise-linear (PWL) function based on CMOS cells that allow programmable generation of 2–7-scroll chaotic attractors. The mathematical model of the chaotic oscillator designed herein has four coefficients and a PWL function, which can be varied to provide a high value of the maximum Lyapunov exponent. The coefficients are implemented electronically by designing operational transconductance amplifiers that allow programmability of their transconductances. Design simulations of the chaotic oscillator are provided for the 0.35 μ m CMOS technology. Post-layout and process–voltage–temperature (PVT) variation simulations demonstrate robustness of the multi-scroll chaotic attractors. Finally, we highlight the synchronization of two seven-scroll attractors in a master–slave topology by generalized Hamiltonian forms and observer approach. Simulation results show that the synchronized CMOS chaotic oscillators are robust to PVT variations and are suitable for chaotic secure communication applications.
机译:使用互补金属氧化物半导体(CMOS)集成电路技术设计混沌振荡器以产生多滚动吸引子一直是一个挑战。这样,我们引入了基于CMOS单元的电流模式分段线性(PWL)功能,该功能允许以可编程方式生成2-7滚动混沌吸引子。本文设计的混沌振荡器的数学模型具有四个系数和PWL函数,可以对其进行更改以提供最大Lyapunov指数的高值。通过设计允许跨导可编程的运算跨导放大器,以电子方式实现系数。针对0.35μmCMOS技术提供了混沌振荡器的设计仿真。布局后和过程-电压-温度(PVT)变化仿真证明了多卷混沌吸引子的鲁棒性。最后,我们通过广义哈密顿量形式和观察者方法强调了主从拓扑中两个七辊吸引子的同步。仿真结果表明,同步CMOS混沌振荡器对PVT变化具有鲁棒性,适用于混沌安全通信应用。

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