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CMOS OTA-Based Filters for Designing Fractional-Order Chaotic Oscillators

机译:基于CMOS OTA的过滤器用于设计分数级混沌振荡器

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摘要

Fractional-order chaotic oscillators (FOCOs) have shown more complexity than integer-order chaotic ones. However, the majority of electronic implementations were performed using embedded systems; compared to analog implementations, they require huge hardware resources to approximate the solution of the fractional-order derivatives. In this manner, we propose the design of FOCOs using fractional-order integrators based on operational transconductance amplifiers (OTAs). The case study shows the implementation of FOCOs by cascading first-order OTA-based filters designed with complementary metal-oxide-semiconductor (CMOS) technology. The OTAs have programmable transconductance, and the robustness of the fractional-order integrator is verified by performing process, voltage and temperature variations as well as Monte Carlo analyses for a CMOS technology of 180 nm from the United Microelectronics Corporation. Finally, it is highlighted that post-layout simulations are in good agreement with the simulations of the mathematical model of the FOCO.
机译:分数顺序混沌振荡器(Focos)显示比整数混沌混沌更复杂。但是,大多数电子实现是使用嵌入式系统进行的;与模拟实现相比,它们需要巨大的硬件资源来近似分数阶衍生物的解决方案。以这种方式,我们使用基于操作跨导放大器(OTAS)的分数阶集成商提出了Focos的设计。案例研究显示了通过级联基于OTA的滤波器的级联氧化物半导体(CMOS)技术的基于型OTA的过滤器来实现。 OTA具有可编程跨导,通过执行来自联合微电子公司180nm的CMOS技术的CMOS技术的Monte Carlo分析来验证分数阶积分器的鲁棒性。最后,突出显示,布局后模拟与焦点的数学模型的模拟吻合良好。

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