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Dynamical properties and chaos synchronization of improved Colpitts oscillators

机译:改进的Colpitts振荡器的动力学性质和混沌同步

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In this paper, the dynamics and synchronization of improved Colpitts oscillators designed to operate in ultrahigh frequency range are considered. The model is described by a continuous time four-dimensional autonomous system with an exponential nonlinearity. The system is integrated numerically and various bifurcation diagrams and corresponding graphs of largest 1D Lyapunov exponent are plotted to summarize different scenarios leading to chaos. It is found that the oscillator moves from the state of fixed point motion to chaos via the usual paths of period-doubling, intermittency and interior crisis routes when monitoring the bias (i.e. power supply) in tiny ranges. In order to promote chaos-based synchronization designs of this type of oscillators, a synchronization strategy based upon the design of a nonlinear state observer is successfully adapted. The suggested approach enables synchronization to be achieved via a scalar transmitted signal which represents a suitable feature for communication applications. Numerical simulations are performed to demonstrate the effectiveness and feasibility of the proposed technique.
机译:在本文中,考虑了设计用于超高频范围的改进型Colpitts振荡器的动力学和同步性。该模型由具有指数非线性的连续时间四维自治系统描述。该系统已进行了数值集成,并绘制了最大一维Lyapunov指数的各种分叉图和相应图,以总结导致混乱的各种情况。发现当在微小范围内监视偏置(即电源)时,振荡器通过周期倍增,间歇性和内部危机路线的通常路径从定点运动状态变为混乱状态。为了促进这种类型的振荡器的基于混沌的同步设计,成功地采用了基于非线性状态观测器的设计的同步策略。所提出的方法使得能够经由标量传输的信号来实现同步,该标量传输的信号代表用于通信应用的合适特征。进行了数值模拟,以证明所提出技术的有效性和可行性。

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