← 返回 JSSC 论文列表
📄 下载 JSSC 原文 PDF
JSSC 2007第8期Clocking & PLLs

On the Self-Generation of Electrical

研究非线性传输线自生稳定电孤子脉冲及其混沌动态的电路实现。
无具体指标
非线性传输线电孤子自生振荡器CMOS原型混沌动态
首次构建自生稳定电孤子脉冲的电路振荡器
实验研究稳定孤子振荡器的动态特性
探索闭环拓扑中混沌信号产生的可能性
Abstract
The nonlinear transmission line is a structure where short-duration pulses called electrical solitons can be created and propagated. By combining, in a closed-loop topology, the nonlinear line and a special amplifier that provides not only gain but also mechanisms to tame inherently unruly soliton dynamics, we recently constructed the first electrical soliton oscillator that self-generates a stable, periodic train of electrical soliton pulses (Ricketts et al. , IEEE Trans. MTT , 2006). This paper starts with a review of this recently introduced circuit concept, and then reports on new contributions, i.e., further experimental studies of the dynamics of the stable soliton oscillator and a CMOS proto- type demonstrating the chip-scale operation of the stable soliton oscillator. Finally, we go to the opposite end of the spectrum and present a numerical study showing the possibilities that deliberate promotions of the unruly soliton dynamics in the closed-loop topology can produce chaotic signals.