新型改进型两级Colpitts宽带混沌振荡器设计及非线性动态性能分析

Zhaoxia Zhang, Xiu Hu, Xiaopeng Ma, Lingzhen Yang, Junfen Wang
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引用次数: 1

摘要

本文提出了一种用于超高频工作的新型改进两级科尔皮茨振荡器的动力学和非线性性能。本文将标准的两级科尔皮茨电路的电感转移到第二个晶体管的基极上,并在两个晶体管的基极上串联一个电阻,描述了一种新的两级科尔皮茨振荡器模型。新型两级Colpitts电路不仅可以有效地降低寄生电容对电路谐振频率的影响,而且可以大大降低谐振网络的总电容,既提高了混沌信号的基频,又消除了其周期性,使频谱更加平坦平滑。采用数值分析方法求解了新型改进的两级Colpitts电路的六阶微分方程的图和数值解。通过数值仿真和电路仿真,获得了系统的分岔图、李雅普诺夫指数、相位图和时间迹图、频谱图和自相关等基本信息。仿真结果表明,改进后的两级Colpitts振荡器可以在周期和混沌状态下工作,其基频可提高到5GHz。,约为晶体管截止频率的0.6倍,比标准两级科尔皮茨振荡器的截止频率高2GHz。改进后的两级科尔皮茨振荡电路的频谱更平坦、更平滑,且无周期性。数值模拟验证了所提出的新型两级Colpitts振荡器的有效性和可行性。
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Design and Nonlinear Dynamical Performance Analysis of Novel Improved Two-Stage Colpitts Wideband Chaotic Oscillator
In this paper, the dynamics and nonlinear performance of novel improved two-stage Colpitts oscillators designed to operate in ultrahigh frequency range are proposed. The novel two-stage Colpitts oscillators model is described by transfering the inductance of the standard two-stage Colpitts circuit to the base of the second transistor and connect a resistor in series with the base of the two transistors in this paper. The novel two-stage Colpitts circuit not only can effectively reduce the influence of the parasitic capacitance on the resonant frequency of the circuit, but also can greatly reduce the total capacitance of the resonant network, which not only increase the fundamental frequency of the chaotic signal, but also eliminate the periodicity and make the spectrum flatter and smoother. The numerical analysis is used to solve the graph and numerical solution of the sixth order differential equation of the novel improved two-stage Colpitts circuit. The basic information of the system such as bifurcation diagram, Lyapunov exponent, phase diagram and time traces diagram, spectrum diagram and auto-correlation are obtained by numerical simulation and circuit simulation. The simulation results show that the novel improved two-stage Colpitts oscillators can work in the periodic and chaotic states, and its fundamental frequency can be increased to 5GHz., about 0.6 times the cutoff frequency of the transistor, which is 2GHz higher than that of the standard two-stage Colpitts oscillator. The spectrum of novel improved two-stage Colpitts oscillators circuit is flatter and smoother, and has no periodicity. Numerical simulations are performed to demonstrate the effectiveness and feasibility of the proposed novel two-stage Colpitts oscillators.
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