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Novel wideband chaotic approach LNA with microcontroller compatibility for 5G wireless secure communication

机译:新型宽带混沌方法LNA具有5G无线安全通信的微控制器兼容性

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摘要

The tremendous growth of recent technologies toward secure communication networks requires two application goals: (1) encrypted message signal and (2) wide bandwidth operation. This work proposes a wide bandwidth disembodied polynomial chaos approach low-noise amplifier (LNA) with microcontroller compatibility for 5G wireless secure communication. Two different architectures are proposed for achieve desired goal. First architecture approach uses three-state variable Lorenz system which novitiate into discrete mode by using Euler method and make compatibility with microcontroller. The characteristics of output chaotic waveforms from first approach realized by using bifurcation and Lyapunov exponent methods. The propose first novel design methodology reproduce its dynamical behavior with conventional continuous-time system and provides three output chaotic states which is used to encrypt message at the physical layer and achieves security in the telecommunication technologies. While in second architecture, LNA is designed using disembodied polynomial chaos approach which reproduce chaotic output signal over wide bandwidth ranging from 2 to 10 GHz. The LNA is implemented and fabricated using TSMC 45 nm commercial process and reveals minimum noise figure up to 1.5 dB. The fabrication chip of chaos approach LNA under the power consumption of 3.2 mW made good correlation with simulation ones.
机译:最近对安全通信网络的巨大增长需要两个应用目标:(1)加密的消息信号和(2)宽带宽操作。这项工作提出了一种宽带宽不合形的多项式混沌方法,具有用于5G无线安全通信的微控制器兼容性的低噪声放大器(LNA)。提出了两种不同的架构,以实现所需目标。第一个架构方法使用三个状态变量LORENZ系统通过使用欧拉方法来实现离散模式,并与微控制器兼容。利用分岔和Lyapunov指数方法实现了第一种方法的输出混沌波形的特征。该提出的第一新颖的设计方法与传统的连续时间系统再现了其动态行为,并提供了三种输出混沌状态,用于在物理层加密消息,并在电信技术实现安全性。虽然在第二架构中,LNA采用DisoModied多项式混沌方法设计,其在宽范围内再现混沌输出信号,范围为2到10 GHz。使用TSMC 45 NM商业过程实施和制造LNA,并揭示最低噪声系数高达1.5 dB。混沌方法的制造芯片在3.2 MW的功耗下的CHAOS接近LNA与模拟芯片相关。

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