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Numerical investigation and experimental demonstration of chaos from two-stage Colpitts oscillator in the ultrahigh frequency range

机译:两级Colpitts振荡器在超高频范围内混沌的数值研究和实验证明

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摘要

A hardware prototype of the two-stage Colpitts oscillator employing the microwave BFG520 type transistors with the threshold frequency of 9 GHz and designed to operate in the ultrahigh frequency range (300-1000 MHz) is described. The practical circuit in addition to the intrinsic two-stage oscillator contains an emitter follower acting as a buffer and minimizing the influence of the load. The circuit is investigated both numerically and experimentally. Typical phase portraits, Lyapunov exponents, Lyapunov dimension and broadband continuous power spectra are presented. The main advantage of the two-stage chaotic Colpitts oscillator against its classical single-stage version is in the fact that operating in a chaotic mode it exhibits higher fundamental frequencies and smoother power spectra.
机译:描述了两级​​Colpitts振荡器的硬件原型,该原型使用阈值频率为9 GHz的微波BFG520型晶体管并设计为在超高频范围(300-1000 MHz)中工作。除固有的两级振荡器外,实际电路还包含一个射极跟随器,它充当缓冲器并最大程度地减小了负载的影响。对该电路进行了数值和实验研究。介绍了典型的相图,李雅普诺夫指数,李雅普诺夫维数和宽带连续功率谱。两级混沌Colpitts振荡器相对于经典单级振荡器的主要优点在于,以混沌模式工作时,它表现出更高的基频和更平滑的功率谱。

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